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	<title>New research results Archive &#8211; Holzbauforschung Mainz | Timber and Plastics Research Group Mainz UAS</title>
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		<title>FINBAU 2024 Exhibition</title>
		<link>https://holzbauforschung-mainz.de/finbau2024/</link>
		
		<dc:creator><![CDATA[admin]]></dc:creator>
		<pubDate>Fri, 02 Aug 2024 07:37:21 +0000</pubDate>
				<category><![CDATA[Blog and News]]></category>
		<category><![CDATA[Meet our team]]></category>
		<category><![CDATA[New research results]]></category>
		<category><![CDATA[BAU meets LUX]]></category>
		<category><![CDATA[Conference]]></category>
		<category><![CDATA[Hochschule Mainz]]></category>
		<category><![CDATA[Sustainable Construction]]></category>
		<guid isPermaLink="false">https://holzbauforschung-mainz.de/?p=1683</guid>

					<description><![CDATA[<p>FINBAU 2024 - BAU meets LUX exhibition. Meeting point for innovation and sustainability: The LUX - Pavilion of Mainz University of Applied Sciences, Ludwigstrasse 2 in Mainz is showcase for ongoing and planned research projects that offer exciting insights and innovative approaches to the sustainable construction and operation of real estate and infrastructure. The Department<span class="post-excerpt-end">&#8230;</span></p>
<p class="more-link"><a href="https://holzbauforschung-mainz.de/finbau2024/" class="themebutton">Read More</a></p>
<p>Der Beitrag <a href="https://holzbauforschung-mainz.de/finbau2024/">FINBAU 2024 Exhibition</a> erschien zuerst auf <a href="https://holzbauforschung-mainz.de">Holzbauforschung Mainz | Timber and Plastics Research Group Mainz UAS</a>.</p>
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		<span class="fl-heading-text">FINBAU 2024 - BAU meets LUX exhibition.</span>
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	<p>Meeting point for innovation and sustainability: The LUX - Pavilion of Mainz University of Applied Sciences, Ludwigstrasse 2 in Mainz is showcase for ongoing and planned research projects that offer exciting insights and innovative approaches to the sustainable construction and operation of real estate and infrastructure. The Department of Civil Environmental Engineering presents from October 31 till November 8, 2024 research projects in this exhibition and offers a diverse program of events that highlights future-oriented developments in the real estate and infrastructure sectors.</p>
<p>The action week “BAU meets LUX” focuses on the topics of “Sustainable construction and operation of real estate and infrastructure”. The title of the accompanying exhibition, FINBAU 2024 - Research Initiative for Sustainable Construction, is more than just a motto - it symbolizes the university's commitment to an environmentally friendly future. The exchange with practice, politics and science should send a strong signal for sustainability in the construction and infrastructure sector.</p>
<p>Discover pioneering projects and be inspired by the university's research initiatives and meet our team!<br />
For further information please visit the  official website (in German) <a href="https://www.hs-mainz.de/studium/studiengaenge/technik/bauingenieurwesen-beng/aktuelles/bau-meets-lux/">BAU meets LUX - Hochschule Mainz</a> or check out last years impressions (3D exhibition walk through)  <a href="https://my.matterport.com/show/?m=ti3A2gkhrpu">BAUmeetsLUX 2023.</a></p>
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</div><p>Der Beitrag <a href="https://holzbauforschung-mainz.de/finbau2024/">FINBAU 2024 Exhibition</a> erschien zuerst auf <a href="https://holzbauforschung-mainz.de">Holzbauforschung Mainz | Timber and Plastics Research Group Mainz UAS</a>.</p>
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		<title>Dissertation successful defended</title>
		<link>https://holzbauforschung-mainz.de/disputation-ribeiro/</link>
		
		<dc:creator><![CDATA[admin]]></dc:creator>
		<pubDate>Fri, 19 Jul 2024 16:41:00 +0000</pubDate>
				<category><![CDATA[Blog and News]]></category>
		<category><![CDATA[New research results]]></category>
		<category><![CDATA[Disputation]]></category>
		<category><![CDATA[Disstertation]]></category>
		<category><![CDATA[With Distinction]]></category>
		<guid isPermaLink="false">https://holzbauforschung-mainz.de/?p=1688</guid>

					<description><![CDATA[<p>Congratulations to Doctor Aléxia Brandão Ribeiro. Alexia finished her doctoral thesis "Moment Resistant Joints for Timber Frames" with Distinction! Her dissertation proposes and discusses a novel type of moment-resisting joint for timber frames. The corner’s prismatic volume was made of high-strength reinforced concrete, bonded to both the timber beam and column in a composite joint.<span class="post-excerpt-end">&#8230;</span></p>
<p class="more-link"><a href="https://holzbauforschung-mainz.de/disputation-ribeiro/" class="themebutton">Read More</a></p>
<p>Der Beitrag <a href="https://holzbauforschung-mainz.de/disputation-ribeiro/">Dissertation successful defended</a> erschien zuerst auf <a href="https://holzbauforschung-mainz.de">Holzbauforschung Mainz | Timber and Plastics Research Group Mainz UAS</a>.</p>
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	<p>Alexia finished her doctoral thesis "Moment Resistant Joints for Timber Frames" with Distinction!</p>
<p>Her dissertation proposes and discusses a novel type of moment-resisting joint for timber frames. The corner’s prismatic volume was made of high-strength reinforced concrete, bonded to both the timber beam and column in a composite joint. The research includes analytical, experimental, and numerical studies, focusing on bending strength, stiffness, and failure modes of this innovative joint. From the mechanical model, based on assumed stress-strain relations with elastoplastic characteristics, design equations have been derived to describe the ductile behavior of the moment resistant joint.</p>
<p>The final dissertation has been approved on July 19, 2024. Thank you for the fascinating insights in your research and to the Supervisors João Negrão and Alfredo Dias.</p>
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</div><p>Der Beitrag <a href="https://holzbauforschung-mainz.de/disputation-ribeiro/">Dissertation successful defended</a> erschien zuerst auf <a href="https://holzbauforschung-mainz.de">Holzbauforschung Mainz | Timber and Plastics Research Group Mainz UAS</a>.</p>
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		<title>Publications</title>
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		<dc:creator><![CDATA[admin]]></dc:creator>
		<pubDate>Mon, 08 Jul 2024 13:17:46 +0000</pubDate>
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					<description><![CDATA[<p>(Only books, Journal papers and Conference Proceedings in chronological order) &#160; Müller, M.L., Huber, M., Brüchert, F. &#38; Schober, K.-U. (2025). Improving Structural Roundwood Classification by Digital 3D-Measurment. World Conference on Timber Engineering (WCTE 2025). Brisbane, Australia. (reviewed and accepted). Pinger, C., Müller, M.L., Guzmán, A.F. &#38; Schober, K.-U. (2025). Development of a Prefabricated Adhesively<span class="post-excerpt-end">&#8230;</span></p>
<p class="more-link"><a href="https://holzbauforschung-mainz.de/publications/" class="themebutton">Read More</a></p>
<p>Der Beitrag <a href="https://holzbauforschung-mainz.de/publications/">Publications</a> erschien zuerst auf <a href="https://holzbauforschung-mainz.de">Holzbauforschung Mainz | Timber and Plastics Research Group Mainz UAS</a>.</p>
]]></description>
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	<p><span style="color: #999999;">(Only books, Journal papers and Conference Proceedings in chronological order)</span></p>
<p>&nbsp;</p>
<p><span style="color: #999999;">Müller, M.L., Huber, M., Brüchert, F. &amp; Schober, K.-U. (2025). <strong>Improving Structural Roundwood Classification by Digital 3D-Measurment</strong><em>.</em> <em>World Conference on Timber Engineering (WCTE 2025)</em>. Brisbane, Australia. (reviewed and accepted).</span></p>
<p><span style="color: #999999;">Pinger, C., Müller, M.L., Guzmán, A.F. &amp; Schober, K.-U. (2025). <strong>Development of a Prefabricated Adhesively Bonded Joint for Bamboo Structures</strong><em>.</em> <em>World Conference on Timber Engineering (WCTE 2025)</em>. Brisbane, Australia. (reviewed and accepted).</span></p>
<p><span style="color: #999999;"><span style="font-size: 16px;">Bender, T., Keßler, M. &amp; Schober, K.-U. (2024).</span><strong> Bringing decayed beams back to life: On-site renovation and rehabilitation with fine-grain composite inlays.</strong> <em>CIMAD 2024 - III Congreso Ibero-Latinoamericano de la Madera en la Construcción</em>. Madrid, Spain.</span></p>
<p><span style="color: #999999;">Bender, T., Müller, M.L., Pinger, C. &amp; Schober, K.-U. (2024). <strong>From decay to durability: A study on the environmental and aging impact on the degradation of wood species.</strong> <em>REHABEND 2024. Euro-American Congress on Construction Pathology, Rehabilitation Technology and Heritage Management</em>, (Lombillo, I.<em>, et al.</em>, Eds.). University of Cantabria - Building Technology R&amp;D Group, Gijon, Spain.</span></p>
<p><span style="color: #999999;">Huber, M., Brüchert, F., Hofmann, N., Schober, K.-U., Hörnel-Metzger, B., Müller, M.L. &amp; Sauter, U.H. (2024). <strong>Green oak building – small diameter logs for construction.</strong> <em>11th Hardwood Conference</em>, (Németh, R.<em>, et al.</em>, Eds.). University of Sopron Press, Sopron, Hungary.</span></p>
<p><span style="color: #999999;">Schober, K.-U., Brüchert, F., Müller, M.L. &amp; Sauter, U.H. (2024). <strong>Determination of the mechanical properties of European oak roundwood species for structural purposes.</strong> <em>CIMAD 2024 - III Congreso Ibero-Latinoamericano de la Madera en la Construcción</em>. Madrid, Spain.</span></p>
<p><span style="color: #999999;">Bender, T., Schober, K.-U. &amp; Ihle, R. (2023). <strong>Herausforderungen bei geschädigten Holzbalkendecken: Effiziente und substanzschonende Instandsetzung, Teil 1. </strong><em>B+B Bauen im Bestand 2023(5)</em>, 19-23. ISBN 2190-9504.</span></p>
<p><span style="color: #999999;">Bender, T., Schober, K.-U. &amp; Ihle, R. (2023). <strong>Herausforderungen bei geschädigten Holzbalkendecken: Effiziente und substanzschonende Instandsetzung, Teil 2. </strong><em>B+B Bauen im Bestand 2023(6)</em>, 36-39. ISBN 2190-9504.</span></p>
<p><span style="color: #999999;">Hofmann, N., Brüchert, F., Sauter, U.H., Schober, K.-U., Hörnel-Metzger, B. &amp; Müller, M.L. (2023). <strong>Green Oak Building with High-Tech Methods, Part 1: Characterisation of the Raw Material. </strong><em>World Conference on Timber Engineering (WCTE 2023)</em>, pp. 711-716. World Conference on Timber Engineering 2023 (WCTE 2023), Oslo, Norway. doi:10.52202/069179-0097</span></p>
<p><span style="color: #999999;">Sauter, U.H., Brüchert, F., Hofmann, N., Hörnel-Metzger, B., Schober, K.U. &amp; Müller, M.L. (2023). <strong>Towards the use of small-diameter oak roundwood for structural purposes - Determination of mechanical properties by non-destructive and destructive testing as prerequisite for mechanical log grading.</strong> <em>2023 IUFRO All-Division 5 Conference</em>. International Union of Forest Research Organisations (IUFRO), Cairns, Australia.</span></p>
<p><span style="color: #999999;">Schober, K.U. (2023). <strong>New bio-based composites for joints in timber structures.</strong> <em>The 9th Annual World Congress of Advanced Materials</em>. Tokyo, Japan.</span></p>
<p><span style="color: #999999;">Schober, K.-U., Hörnel-Metzger, B., Müller, M.L., Hofmann, N., Brüchert, F. &amp; Sauter, U.H. (2023). <strong>Green Oak Building with High-Tech Methods, Part 2: Log Bending Tests for Determination of Strength and Stiffness. </strong><em>World Conference on Timber Engineering (WCTE 2023)</em>, pp. 119-125. World Conference on Timber Engineering 2023 (WCTE 2023), Oslo, Norway. doi:10.52202/069179-0016</span></p>
<p><span style="color: #999999;">Bender, T., Schober, K.-U. &amp; Ihle, R. (2022). <strong>On-site rehabilitation of decayed timber floors with epoxy-resin composites. </strong><em>REHABEND 2022. Euro-American Congress on Construction Pathology, Rehabilitation Technology and Heritage Management</em>, (Lombillo, I.<em>, et al.</em>, Eds.), pp. 2022-2029. University of Cantabria - Building Technology R&amp;D Group, Granada, ES. ISBN 978-84-09-42253-1.</span></p>
<p><span style="color: #999999;">Chahade, T. &amp; Schober, K.-U. (2022). <strong>Experimental investigations on the pull-out strength of steel rods bonded in Douglas fir roundwood specimens with polymer concrete. </strong><em>European Journal of Wood and Wood Products 81(2)</em>, 439-450. doi:10.1007/s00107-022-01855-x</span></p>
<p><span style="color: #999999;">Chahade, T., Schober, K.-U. &amp; Morillas, L. (2022). <strong>Interactive structural design of hyperbolic grid shells.</strong> <em>Proceedings of the Institution of Civil Engineers - Structures and Buildings 175(2)</em>, 141-152. doi:10.1680/jstbu.19.00061</span></p>
<p><span style="color: #999999;">Hofmann, N., Brüchert, F., Sauter, U.H., Schober, K.U. &amp; Hörnel-Metzger, B. (2022). <strong>Green-Oak Building: Characterisation of Small-Diameter Logs from Oak by Non-Destructive and Destructive Testing.</strong><em>10th Hardwood Conference</em>, (Németh, R.<em>, et al.</em>, Eds.), pp. 37-39. University of Sopron Press, Sopron, Hungary. doi:10.35511/978-963-334-446-0</span></p>
<p><span style="color: #999999;">Hofmann, N., Brüchert, F., Sauter, U.H., Schober, K.U. &amp; Hörnel-Metzger, B. (2022). <strong>Small-Diameter Logs from Oak for Structural Purposes - Determination of Mechanical Properties by NonDestructive and Destructive Testing.</strong> <em>22nd International Nondestructive Testing and Evaluation of Wood Symposium</em>, (Wang, X. and Ross, R.J., Eds.), pp. 192-193. U.S. Department of Agriculture, Forest Service, Forest Products Laboratory, Madison, WI, Quebec, QC, CA.</span></p>
<p><span style="color: #999999;">Ihle, R., Bender, T. &amp; Schober, K.-U. (2022). <strong>Effiziente und substanzschonende Sanierung von Holzkonstruktionen mit Epoxidharz-Verbundwerkstoffen – Robin Ihle, Tom Bender, Kay-Uwe Schober.</strong> <em>Mängel - Schäden - Prävention.</em>, pp. 225-240. Fraunhofer IRB Verlag, Stuttgart, Lübeck. doi:10.51202/9783738807714-225</span></p>
<p><span style="color: #999999;">Bender, T., Ihle, R. &amp; Schober, K.-U. (2021). <strong>Polymerwerkstoffe in der Denkmalpflege - Ein Beitrag zur substanzschonenden Sanierung geschädigter Holzkonstruktionen.</strong> <em>5. BIH-Treffen: Tagungsband</em>, (Stolte, D., Ed.), pp. 13-22. Frankfurt University of Applied Sciences, Frankfurt.</span></p>
<p><span style="color: #999999;">Chahade, T., Schober, K.U., Morillas, L. &amp; Schäfer, P. (2021). <strong>Large scale round wood trusses: Part 2 - Parametric BIM tool for integrated design.</strong> <em>16th World Conference on Timber Engineering (WCTE 2021)</em>. Centro UC de Innovación de Madera, Santiago de Chile, República de Chile.</span></p>
<p><span style="color: #999999;">Schober, K.U., Chahade, T. &amp; Morillas, L. (2021). <strong>Large scale round wood trusses: Part 1 - Economic connection design with grouted joints.</strong> <em>16th World Conference on Timber Engineering (WCTE 2021)</em>. Centro UC de Innovación de Madera, Santiago de Chile, República de Chile.</span></p>
<p><span style="color: #999999;">Schober, K.-U. (2020). <strong>Strengthening of timber floors with concrete-type adhesives.</strong> <em>Proceedings of the Institution of Civil Engineers - Structures and Buildings 173(5)</em>, 320-325. doi:10.1680/jstbu.19.00001</span></p>
<p><span style="color: #999999;">Chahade, T., Schober, K.U. &amp; Morillas, L. (2018). <strong>Structural design optimization of multidimensional gridshells: Parametric interaction of architecture, engineering and manufacturing.</strong> <em>15th World Conference on Timber Engineering (WCTE 2018)</em>. National Institute of Forest Science, Seoul, Republic of Korea.</span></p>
<p><span style="color: #999999;">Dias, A., Fragiacomo, M., Gramatikov, K., Kreis, B., Kupferle, F., Monteiro, S., Sandanus, J., Schänzlin, J., Schober, K.-U. &amp; Sebastian, W. (2018). <strong>Design of timber-concrete composite structures-A state-of-the-art report. </strong>In <em>Report No. FP1402/WG4</em>. COST Action FP1402, Brussels, Belgium.</span></p>
<p><span style="color: #999999;">Schober, K.U., Becker, W. &amp; Negrão, J.H. (2018). <strong>Grouted joints for modern round wood bridge and truss structures - Ligações moldadas para estruturas modernas de treliças e pontes em rolaria de madeira.</strong> <em>Revista Portuguesa de Engenharia de Estruturas - Portuguese Journal of Structural Engineering Série III. n.º 7. </em><em>(julho 2018)(Ed. LNEC.)</em>, 55-64. ISBN 2183-8488.</span></p>
<p><span style="color: #999999;">Schober, K.U., Chahade, T. &amp; Becker, W. (2018). <strong>Experimental investigations of grouted timber joints exposed to different climate conditions.</strong> <em>15th World Conference on Timber Engineering (WCTE 2018)</em>, (Lee, C.<em>, et al.</em>, Eds.). National Institute of Forest Science, Seoul, Republic of Korea. ISBN 979-11-6019-235-3.</span></p>
<p><span style="color: #999999;">Schober, K.U., Chahade, T. &amp; Morillas, L. (2018). <strong>Experimental investigations of grouted timber joints under different climate conditions and moisture content change.</strong> <em>Encontro Brasileiro em Madeiras e Estruturas de Madeira (XVI EBRAMEM)</em>, (USP, E.d.E.d.S.C., Ed.), p. 2048. São Carlos, Brazil. ISBN 978-85-8023-065-9.</span></p>
<p><span style="color: #999999;">Lieyanto, L. &amp; Schober, K.U. (2017). <strong>Interfacial Cracks of Dissimilar Orthotropic Bimaterial, An Analytical Review based on TING´s approach. </strong><em>1st AITAA IC International Symposium on Business, Management and Technologies</em>, p. 268. Penerbit Gunadarma, Depok, Jakarta, Indonesia. ISBN 978-602-9438-77-2.</span></p>
<p><span style="color: #999999;">Schober, K.U. (2017). <strong>Strengthening of timber structures with FRPs, Design guidelines for FRP damage and delamination. </strong><em>COST Action TU1207 Next Generation Design Guidelines for Composites in Construction: End of Action Conference</em>. The University of Sheffield, Budapest, Hungary. doi:10.15131/shef.data.5036105.v2</span></p>
<p><span style="color: #999999;">Schober, K.U., Becker, W. &amp; Negrão, J.H. (2017). <strong>Grouted joints for modern round wood bridge and truss structures.</strong> <em>Latin American conference on Timber Structures 2017</em>. Junín, Argentina.</span></p>
<p><span style="color: #999999;">Schober, K.U., Becker, W. &amp; Negrão, J.H. (2017). <strong>Ligações moldadas para estruturas modernas de treliças e pontes em rolaria de madeira. </strong><em>CIMAD 2017 - II Congreso Ibero-Latinoamericano de la Madera en la Construcción</em>. Junín, Argentina.</span></p>
<p><span style="color: #999999;">Becker, W. &amp; Schober, K.U. (2016). <strong>Holz-Beton-Verbund im Knotensystem von Rundholzbrücken. </strong><em>4. Internationale Holzbrückentage IHB 2016</em>. Stuttgart, Germany.</span></p>
<p><span style="color: #999999;">Becker, W., Schober, K.U. &amp; Weber, J. (2016). <strong>Vergussknotenlösungen im Ingenieurholzbau.</strong> <em>Bautechnik 93(6)</em>, 371-379. doi:10.1002/bate.201500076</span></p>
<p><span style="color: #999999;">Lieyanto, L. &amp; Schober, K.U. (2016). <strong>Anisotropic stress analysis of notches and holes in timber structures. </strong><em>14th World Conference on Timber Engineering (WCTE 2016)</em>, (Eberhardsteiner, J.<em>, et al.</em>, Eds.), p. 6301. TU Verlag Wien, Vienna, Austria. ISBN 978-390303900-1.</span></p>
<p><span style="color: #999999;">Scharmacher, F., Schober, K.U., Almstedt, N. &amp; Boettges, M. (2016). <strong>Standard repair details for historic roof structures accounting support damage and mounting situation. </strong><em>14th World Conference on Timber Engineering (WCTE 2016)</em>, (Eberhardsteiner, J.<em>, et al.</em>, Eds.), p. 6301. TU Verlag Wien, Vienna, Austria. ISBN 978-390303900-1.</span></p>
<p><span style="color: #999999;">Schober, K.-U., Becker, W. &amp; Weber, J. (2016). <strong>Grouted joints in timber engineering.</strong> <em>14th World Conference on Timber Engineering (WCTE 2016)</em>, (Eberhardsteiner, J.<em>, et al.</em>, Eds.), p. 6301. TU Verlag Wien, Vienna, Austria. ISBN 978-390303900-1.</span></p>
<p><span style="color: #999999;">Schober, K.-U. &amp; Tannert, T. (2016). <strong>Hybrid connections for timber structures.</strong> <em>European Journal of Wood and Wood Products 74(3)</em>, 369-377. doi:10.1007/s00107-016-1024-3</span></p>
<p><span style="color: #999999;">Weber, J., Kjølsrud, E. &amp; Schober, K.U. (2016). <strong>Kraftflussoptimierte Verbindungen im Ingenieurbau.</strong> <em>Bautechnik 93(11)</em>, 834-838. doi:10.1002/bate.201600082</span></p>
<p><span style="color: #999999;">Becker, W., Schober, K.U. &amp; Weber, J. (2015). <strong>Vergusstechnologie schafft neue Möglichkeiten im Holzbau.</strong> <em>Bauen mit Holz 2015(11)</em>, 31-35. ISBN 0005-6545.</span></p>
<p><span style="color: #999999;">Kliger, I.R., Haghani, R., Brunner, M., Harte, A.M. &amp; Schober, K.-U. (2015). <strong>Wood-based beams strengthened with FRP laminates: improved performance with pre-stressed systems.</strong> <em>European Journal of Wood and Wood Products 74(3)</em>, 319-330. doi:10.1007/s00107-015-0970-5</span></p>
<p><span style="color: #999999;">Schober, K.-U. (2015). <strong>New ways in composite design - Introducing round wood for modern bridge and truss structures.</strong> <em>Forest Products Society 69th International Convention</em>. Atlanta, GA, USA. doi:10.13140/rg.2.1.1507.8240</span></p>
<p><span style="color: #999999;">Schober, K.-U., Harte, A.M., Kliger, R., Jockwer, R., Xu, Q. &amp; Chen, J.-F. (2015). <strong>FRP reinforcement of timber structures.</strong> <em>Construction and Building Materials 97</em>, 106-118. doi:10.1016/j.conbuildmat.2015.06.020</span></p>
<p><span style="color: #999999;">Drass, M., Schober, K.U. &amp; Kuechler, M. (2014). <strong>Advancement of glued-in rods using polymer concrete as composite material.</strong> <em>13th World Conference on Timber Engineering (WCTE 2014)</em>, (Salenikovich, A., Ed.), Vol. 2, pp. 1041-1049. Curran Associates, Inc., Red Hook, NY, USA, Quebec, QC, Canada. ISBN 978-1-5108-5820-6.</span></p>
<p><span style="color: #999999;">Drass, M., Schober, K.U. &amp; Kuechler, M. (2014). <strong>Glued-in rods in timber joints: characterization of failure modes dependent on the test set-up. </strong><em>Experimental Research with Timber</em>, (Schober, K.-U., Ed.), pp. 17-21. University of Bath, Bath, United Kingdom. ISBN 1-85790-183-5.</span></p>
<p><span style="color: #999999;">Drass, M., Schober, K.U. &amp; Kuechler, M. (2014). <strong>Pre-tensioned timber truss bridges - An innovative bio-hybrid design approach using round timber. </strong><em>COST Timber Bridge Conference (CTBC 2014)</em>, (Franke, S.<em>, et al.</em>, Eds.). Bern University of Applied Sciences, COST Action FP1004 and 1101, Bienne, Switzerland. ISBN 978-3-9523787-4-8.</span></p>
<p><span style="color: #999999;">Schober, K.-U., Ed. (2014). <strong>Experimental Research with Timber.</strong> University of Bath, Bath, United Kingdom. doi:10.13140/rg.2.1.1327.6008</span></p>
<p><span style="color: #999999;">Schober, K.U. (2014). <strong>New jointing techniques for large-scale timber structures. </strong><em>Keynote lecture - 2nd Annual International Conference on Architecture and Civil Engineering (ACE 2014)</em>, pp. xv-xviii. Singapore. ISBN 2301-394X.</span></p>
<p><span style="color: #999999;">Schober, K.U., Becker, W., Weber, J. &amp; Kjølsrud, E. (2014). <strong>High-performance timber composite joints for spatial roundwood truss structures. </strong><em>13th World Conference on Timber Engineering (WCTE 2014)</em>, (Salenikovich, A., Ed.), Vol. 1, pp. 798-804. Curran Associates, Inc., Red Hook, NY, USA, Quebec, QC, Canada. ISBN 978-1-5108-5820-6.</span></p>
<p><span style="color: #999999;">Borth, O., Schober, K.U. &amp; Rautenstrauch, K. (2013). <strong>Numerische Untersuchungen zur Tragfähigkeit von Queranschlüssen bei Trägern aus Voll‐ und Brettschichtholz ‐ Teil 2: Praxisübliche Anschlußkonfigurationen.</strong> <em>Bautechnik 80(4)</em>, 222-226. doi:10.1002/bate.200301990</span></p>
<p><span style="color: #999999;">Borth, O., Schober, K.U. &amp; Rautenstrauch, K. (2013). <strong>Numerische Untersuchungen zur Tragfähigkeit von Queranschlüssen bei Trägern aus Voll‐ und Brettschichtholz Teil 1: Bruchmechanische Untersuchungen.</strong> <em>Bautechnik 80(3)</em>, 155-161. doi:10.1002/bate.200301440</span></p>
<p><span style="color: #999999;">Schober, K.-U., Ed. (2013). <strong>Innovative Timber Composites - Improving wood with other materials.</strong> University of Bath, Bath, United Kingdom. doi:10.13140/rg.2.1.2376.1765</span></p>
<p><span style="color: #999999;">Schober, K.U. &amp; Drass, M. (2013). <strong>Concrete-based adhesives used in connections.</strong> <em>Innovative Timber Composites - Improving wood with other materials</em>, (Schober, K.-U., Ed.), pp. 8-11. University of Bath, Bath, UK. ISBN 1-85790-178-9.</span></p>
<p><span style="color: #999999;">Schober, K.U., Drass, M. &amp; Becker, W. (2013).<strong> Adhesive strength of timber joints with unconventional glued-in steel rods.</strong> <em>Wood Adhesives 2013</em>. Toronto, ON, Canada.</span></p>
<p><span style="color: #999999;">Schober, K.-U., Reshamvala, M. &amp; Schneider, J. (2013). <strong>Neuentwicklung hybrider Verbundstöße zur Sanierung von Holzbalkendecken im Bestand.</strong> In <em>Kurzberichte aus der Holzforschung</em>, (Schober, K.-U., Ed.), Vol. 2013(11), p. 60. Hochschule Mainz, Forschungsgruppe Holz und Kunststoffe, Mainz, Germany.</span></p>
<p><span style="color: #999999;">Schober, K.-U. &amp; Turhan, B. (2013). <strong>Experimentelle Untersuchung der Verbundtragfähigkeit eingeklebter Gewindestangen in Holz.</strong> In <em>Kurzberichte aus der Holzforschung</em>, (Schober, K.-U., Ed.), Vol. 2013(12), p. 48. Hochschule Mainz, Forschungsgruppe Holz und Kunststoffe, Mainz, Germany.</span></p>
<p><span style="color: #999999;">Becker, W., Weber, J. &amp; Schober, K.U. (2012). <strong>High-performance composite joints for spatial round wood truss structures.</strong> <em>Enhance mechanical properties of timber, engineered wood products and timber structures</em>, (Schober, K.-U., Ed.), pp. 171-175. University of Bath, Bath, UK. ISBN 1-85790-176-2.</span></p>
<p><span style="color: #999999;">Schober, K.-U., Ed. (2012). <strong>Enhance mechanical properties of timber, engineered wood products and timber structures.</strong> University of Bath, Bath, UK. doi:10.13140/rg.2.1.4735.4725</span></p>
<p><span style="color: #999999;">Schober, K.U., Becker, W., Drass, M. &amp; Weber, J. (2012). <strong>Advanced interface interaction in timber engineering joints with dowel-type fasteners embedded in high-performance ceramic fillers. </strong><em>12th World Conference on Timber Engineering (WCTE 2012)</em>, (Quenneville, P., Ed.), Vol. 1, pp. 222-227. Curran Associates, Inc., Red Hook, NY, USA, Auckland, New Zealand. ISBN 978-1-62276-305-4.</span></p>
<p><span style="color: #999999;">Schober, K.U., Drass, M. &amp; Becker, W. (2012). <strong>Advanced interface interaction in timber engineering joints. <em>Enhance mechanical properties of timber, engineered wood products and timber structures. </em></strong>(Schober, K.-U., Ed.), pp. 164-170. University of Bath, Bath, UK. ISBN 1-85790-176-2.</span></p>
<p><span style="color: #999999;">Schober, K.U. (2011). <strong>Polymer composites for structural improvement of timber buildings.</strong> <em>11th International Conference on Wood &amp; Biofiber Plastic Composites and Nanotechnology in Wood Composites Symposium</em>. Madison, WI, USA.</span></p>
<p><span style="color: #999999;">Schober, K.U. (2011). <strong>Tragwerksverstärkung von Holzkonstruktionen im Bestand - Neue Möglichkeiten durch faserverstärkte Kunststoffe. </strong><em>bausubstanz, Zeitschrift für nachhaltiges Bauen, Bauwerksinstandsetzung und Denkmalpflege 1(4)</em>, 38-43. ISBN 2190-4278.</span></p>
<p><span style="color: #999999;">Jahreis, M., Schober, K.U., Haedicke, W. &amp; Rautenstrauch, K. (2010). <strong>Non-destructive testing, measurement and numerical damage analysis of high demanding stress regions in FRP reinforced timber structures. </strong><em>Composites 2010</em>. American Composites Manufacturers Association, Las Vegas, NV, USA.</span></p>
<p><span style="color: #999999;">Schober, K.U. (2010). <strong>Hybrid timber-composite beams - An innovative solution for strengthening of timber structures in reconstruction.</strong> <em>JEC Composites Innovation Show 2010</em>. JEC Composites, Paris, France.</span></p>
<p><span style="color: #999999;">Schober, K.U. (2010). <strong>Polymer composites for rehabilitation of heritage timber structures.</strong> <em>3rd International Workshop on Conservation of Heritage Structures Using FRM and SHM (CSHM-3)</em>. Canada Composites, Ottawa, ON, Canada.</span></p>
<p><span style="color: #999999;">Schober, K.U. (2010). <strong>Tragwerksverstärkung von Holzkonstruktionen im Bestand - Neue Möglichkeiten durch faserverstärkte Kunststoffe. </strong><em>Bausubstanz (4)</em>, 38-44. ISBN 2190-4278.</span></p>
<p><span style="color: #999999;">Jahreis, M., Schober, K.U. &amp; Rautenstrauch, K. (2009). <strong>The application of low intrusion techniques and smart materials for strengthening of timber structures in reconstruction. </strong><em>1st International Conference on Protection of Historical Buildings (PROHITECH 09)</em>, (Mazzolani, F.M., Ed.), Vol. 1, pp. 319-324. CRC Press-Taylor &amp; Francis Group, Rome, Italy. ISBN 978-0-415-55803-7.</span></p>
<p><span style="color: #999999;">Schober, K.U. &amp; Rautenstrauch, K. (2009). <strong>New developments of polymer and bonding technology in Timber Engineering.</strong> State of the Art and applications. <em>ACHEMA 2009 - 29th International Exhibition, Congress on Chemical Engineering, Environmental Protection and Biotechnology</em>. Frankfurt, Germany.</span></p>
<p><span style="color: #999999;">Schober, K.U. &amp; Rautenstrauch, K. (2009). <strong>Structural behavior of hybrid timber-composite beams. </strong><em>Composites &amp; Polycon 2009</em>. American Composites Manufacturers Association, Tampa, FL, USA. doi:10.13140/rg.2.1.3719.6641</span></p>
<p><span style="color: #999999;">Schober, K.U., Rautenstrauch, K. &amp; Jahreis, M. (2009). <strong>Low Intrusion Techniques for Strengthening of Timber Structures in Reconstruction. </strong><em>Wood Adhesives 2009</em>. South Lake Tahoe, NV, USA.</span></p>
<p><span style="color: #999999;">Balseiro, A., Negrão, J., Faria, J., Rautenstrauch, K. &amp; Schober, K.U. (2008). <strong>Prestressed Timber – Part 1: Tests on small specimens.</strong> <em>10th World Conference on Timber Engineering (WCTE 2008)</em>. Miyazaki, Japan.</span></p>
<p><span style="color: #999999;">Brunner, M., Negrão, J., Rautenstrauch, K. &amp; Schober, K.U. (2008). <strong>Timber Concrete Composites.</strong> In <em>LIGNOVISIONEN, Bonding with Timber</em>, (Teischinger, A., Ed.), Vol. 18, pp. 9-15. Universität für Bodenkultur Wien, Vienna, Austria. ISBN 1681-2808.</span></p>
<p><span style="color: #999999;">Franke, S., Franke, B., Schober, K.U. &amp; Rautenstrauch, K. (2008). <strong>The strength behavior of wood in experiment and simulations. </strong><em>10th World Conference on Timber Engineering (WCTE 2008)</em>. Miyazaki, Japan.</span></p>
<p><span style="color: #999999;">Lehmann, M., Brunner, M., Schober, K.U. &amp; Rautenstrauch, K. (2008). <strong>Testing and numerical simulation of FRP prestressed timber structures. </strong><em>Enhancing bondline performance</em>, (Ciha, C., Ed.), pp. 60-67. University of West Hungary, Sopron, Hungary. doi:10.24451/arbor.11613</span></p>
<p><span style="color: #999999;">Pizzo, B. &amp; Schober, K.U. (2008). <strong>On site interventions on decayed beamends.</strong> In <em>LIGNOVISIONEN, Bonding with Timber</em>, (Teischinger, A., Ed.), Vol. 18, pp. 40-49. Universität für Bodenkultur Wien, Vienna, Austria. doi:10.13140/rg.2.1.2343.4083</span></p>
<p><span style="color: #999999;">Rautenstrauch, K., Franke, B., Franke, S. &amp; Schober, K.U. (2008). <strong>A new design approach for end-notched beams - View on code.</strong> <em>CIB-W18 meeting 41, paper 41-6-2</em>, (Görlacher, R., Ed.). International Council for Research and Innovation in Building and Construction, Working Commission W18 - Timber Structures, St. Andrews, NB, Canada.</span></p>
<p><span style="color: #999999;">Schober, K.-U. 2008. <strong>Untersuchungen zum Tragverhalten hybrider Verbundkonstruktionen aus Polymerbeton, faserverstärkten Kunststoffen und Holz.</strong> Dissertation, Schriftenreihe des Instituts für Konstruktiven Ingenieurbau, Bauhaus-Universität Weimar. doi:10.25643/bauhaus-universitaet.1373</span></p>
<p><span style="color: #999999;">Schober, K.U., Brunner, M., Negrão, J., Rautenstrauch, K. &amp; Lavisci, P. (2008). <strong>Timber with Passive Reinforcement. </strong>In <em>LIGNOVISIONEN, Bonding with Timber</em>, (Teischinger, A., Ed.), Vol. 18, pp. 16-22. Universität für Bodenkultur Wien, Vienna, Austria. ISBN 1681-2808.</span></p>
<p><span style="color: #999999;">Schober, K.U., Jahreis, M., Haedicke, W. &amp; Rautenstrauch, K. (2008). <strong>Bonding behavior of near-surface mounted and externally bonded CFRP strips and timber in the end-anchorage zone, Part 1: Small-size specimen testing and NDT measurement.</strong> <em>Enhancing bondline performance</em>, (Ciha, Ed.), pp. 44-50. University of West Hungary, Sopron, Hungary. ISBN 978 963 9364 97 4.</span></p>
<p><span style="color: #999999;">Schober, K.U., Jahreis, M., Haedicke, W. &amp; Rautenstrauch, K. (2008). <strong>Bonding behavior of near-surface mounted and externally bonded CFRP strips and timber in the end-anchorage zone, Part 2: Numerical and analytical aspects of the delamination process.</strong> <em>Enhancing bondline performance</em>, (Ciha, Ed.), pp. 51-59. University of West Hungary, Sopron, Hungary. ISBN 978 963 9364 97 4.</span></p>
<p><span style="color: #999999;">Schober, K.U. &amp; Rautenstrauch, K. (2008). <strong>On the application of cohesive zone modeling in timber composite structures.</strong> <em>10th World Conference on Timber Engineering (WCTE 2008)</em>. Miyazaki, Japan.</span></p>
<p><span style="color: #999999;">Haedicke, W., Müller, J., Doehrer, A., Schober, K.U. &amp; Rautenstrauch, K. (2007). <strong>Long-term behaviour of timber-concrete composite structures.</strong> <em>VSU 2007</em>. Sofia, Bulgaria.</span></p>
<p><span style="color: #999999;">Schober, K.U., Haedicke, W. &amp; Rautenstrauch, K. (2007). <strong>In-situ strengthening of timber structures with high-performance polymer concrete. </strong><em>The Third International Conference on Structural Engineering, Mechanics and Computation</em>, (Zingoni, Ed.), pp. 639-648. Millpress Science Publishers, Rotterdam, Cape Town, South Africa. ISBN 978 90 5966 054 0.</span></p>
<p><span style="color: #999999;">Schober, K.U. &amp; Rautenstrauch, K. (2007). <strong>Structural rehabilitation of wooden ceilings using a high-tech composite system.</strong> <em>Practical Solutions for Furniture and Structural Bonding</em>, (Ntalos, G. and Mantanis, G., Eds.), pp. 107-115. COST Office Brussels, Larnaca, Cyprus.</span></p>
<p><span style="color: #999999;">Franke, S., Franke, B., Schober, K.U. &amp; Rautenstrauch, K. (2006).<strong> Experimental verification of wood using photogrammetry. </strong><em>9th World Conference on Timber Engineering (WCTE 2006)</em>, (Bender<em>, et al.</em>, Eds.). Portland, OR, USA. ISBN 978-1-62276-285-9.</span></p>
<p><span style="color: #999999;">Schober, K.U., Franke, S. &amp; Rautenstrauch, K. (2006). <strong>In-situ strengthening of timber structures with CFRP.</strong> <em>CIB-W18 meeting 39, paper 39-12-2</em>. International Council for Research and Innovation in Building and Construction, Working Commission W18 - Timber Structures, Florence, Italy.</span></p>
<p><span style="color: #999999;">Schober, K.U. &amp; Rautenstrauch, K. (2006). <strong>Post-strengthening of timber structures with CFRP's.</strong> <em>Materials and Structures 40(1)</em>, 27-35. doi:10.1617/s11527-006-9128-6</span></p>
<p><span style="color: #999999;">Schober, K.U. &amp; Rautenstrauch, K. (2006). <strong>Upgrading and repair of timber structures with polymer concrete facing and strengthening.</strong> <em>9th World Conference on Timber Engineering (WCTE 2006)</em>, (Bender<em>, et al.</em>, Eds.), Vol. 2, pp. 1752-1759. Portland, OR, USA. ISBN 978-1-62276-285-9.</span></p>
<p><span style="color: #999999;">Dimmig-Osburg, A., Rautenstrauch, K. &amp; Schober, K.U. (2005). <strong>Upgrading and repair of timber structures with polymer concrete facing and strengthening.</strong> <em>Intl. Symposium on Wood Science and Technologies, 50th Anniversary of The Japan Wood Research Society Pacifico</em>. Yokohama, Japan.</span></p>
<p><span style="color: #999999;">Schober, K.U. &amp; Rautenstrauch, K. (2005). <strong>Experimental investigations on flexural strengthening of timber structures with CFRP.</strong> <em>Bond Behaviour of FRP in Structures: Proceedings of the International Symposium BBFS 2005</em>, (Chen and Teng, Eds.), pp. 465-472. The International Institute for FRP in Construction, Hong Kong, China. doi:10.13140/rg.2.1.3195.3763</span></p>
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</div><p>Der Beitrag <a href="https://holzbauforschung-mainz.de/publications/">Publications</a> erschien zuerst auf <a href="https://holzbauforschung-mainz.de">Holzbauforschung Mainz | Timber and Plastics Research Group Mainz UAS</a>.</p>
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		<title>World Conference on Timber Engineering 2025</title>
		<link>https://holzbauforschung-mainz.de/wcte2025-call/</link>
		
		<dc:creator><![CDATA[admin]]></dc:creator>
		<pubDate>Mon, 15 Jan 2024 10:13:00 +0000</pubDate>
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					<description><![CDATA[<p>WCTE 2025 goes to Brisbane, Queensland, Australia. The Australian Organising Committee invites delegates from around the world to join the World Conference on Timber Engineering 2025 (WCTE 2025) in Brisbane, Queensland, Australia from 22 June 2025 to 26 June 2025. The WCTE is the world’s leading scientific forum for the presentation of the latest technical<span class="post-excerpt-end">&#8230;</span></p>
<p class="more-link"><a href="https://holzbauforschung-mainz.de/wcte2025-call/" class="themebutton">Read More</a></p>
<p>Der Beitrag <a href="https://holzbauforschung-mainz.de/wcte2025-call/">World Conference on Timber Engineering 2025</a> erschien zuerst auf <a href="https://holzbauforschung-mainz.de">Holzbauforschung Mainz | Timber and Plastics Research Group Mainz UAS</a>.</p>
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		<span class="fl-heading-text">WCTE 2025 goes to Brisbane, Queensland, Australia.</span>
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	<p>The Australian Organising Committee invites delegates from around the world to join the <a href="https://www.wcte2025.org/event/df0d5655-c16d-47df-b4a6-457a7dc63d96/summary">World Conference on Timber Engineering 2025</a> (WCTE 2025) in Brisbane, Queensland, Australia from 22 June 2025 to 26 June 2025.</p>
<p>The WCTE is the world’s leading scientific forum for the presentation of the latest technical and architectural solutions and innovations in timber construction. It is considered the most prestigious international event in the field of timber technology for construction, timber structures, and the design of timber architecture.</p>
<p>Professor Keith Crews is the Chair of WCTE 2025 and is also the Director of the Australian Research Council (ARC), Industrial Transformation Research Hub to Advance Timber for Australia’s Future Built Environment (<a href="https://www.advance-timber-hub.org">ARC Advance Timber Hub</a>) which is administered by The University of Queensland. The University of Queensland, along with the support of the ARC Advance Timber Hub, has the pleasure of hosting the WCTE 2025. They are also supported by, the Queensland Government through Tourism &amp; Events Queensland, the Brisbane Economic Development Agency and Tourism Australia.</p>
<p style="text-align: left;" align="RIGHT"><span style="font-size: 14px;"> </span></p>
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	<p>The WCTE 2025 Conference Committee invites authors to submit 2-page abstracts / mini papers for review by the WCTE 2025 International Scientific Committee. Submissions are sought for both oral and poster presentations, which must address the principal conference theme of:</p>
<h4><strong>ADVANCING TIMBER FOR THE FUTURE BUILT ENVIRONMENT</strong></h4>
<p>The WCTE 2025 technical program will have a focus on the importance of research and development undertaken by the timber design and construction community in response to the increased demand from engineering and architectural firms, developers and investors, now emphasising timber engineering as a preferred solution for many projects.</p>
<h4>WCTE 2025 THEMES</h4>
<ul>
<li>Material Performance &amp; Durability</li>
<li>Sustainability and Timber in a Circular Economy</li>
<li>Timber Engineering &amp; Structural Performance</li>
<li>Timber Architecture &amp; Biophililc Design</li>
<li>Education, Innovation &amp; Challenges</li>
<li>Exemplars &amp; Construction Case Studies</li>
</ul>
<p>We invite <a href="https://www.wcte2025.org/event/df0d5655-c16d-47df-b4a6-457a7dc63d96/websitePage:43b49ec1-b5cd-44bc-9e4e-cfde86d2276f">abstract submissions</a> of the above themes in the focused areas of:</p>
<ul>
<li>Architectural Focus</li>
<li>Engineering Focus</li>
<li>Practitioner Focus</li>
</ul>
<p>Submission Deadline: Sunday 30 June 2024.</p>
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	<h4>We look forward to meeting you at WCTE 2025.</h4>
<p><strong>PROFESSOR KEITH CREWS</strong>. Chair (The University of Queensland / ARC Advance Timber Hub)<br />
<strong>PROFESSOR GREG NOLAN</strong>. Deputy Chair (The University of Tasmania)<br />
<strong>PROFESSOR KAY-UWE SCHOBER</strong>. Scientific Committee (Mainz University of Applied Sciences / Holzbauforschung Mainz)</p>
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</div><p>Der Beitrag <a href="https://holzbauforschung-mainz.de/wcte2025-call/">World Conference on Timber Engineering 2025</a> erschien zuerst auf <a href="https://holzbauforschung-mainz.de">Holzbauforschung Mainz | Timber and Plastics Research Group Mainz UAS</a>.</p>
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		<title>Climate change as an interdisciplinary challenge</title>
		<link>https://holzbauforschung-mainz.de/climate-change/</link>
		
		<dc:creator><![CDATA[admin]]></dc:creator>
		<pubDate>Thu, 08 Dec 2022 11:54:00 +0000</pubDate>
				<category><![CDATA[Blog and News]]></category>
		<category><![CDATA[New research results]]></category>
		<category><![CDATA[FVA Forest Utilisation Department]]></category>
		<category><![CDATA[Holzbauforschung Mainz]]></category>
		<category><![CDATA[Holzkompetenzzentrum Trier]]></category>
		<category><![CDATA[Mainz University of Applied Sciences]]></category>
		<category><![CDATA[Timber and Plastics Research Group]]></category>
		<guid isPermaLink="false">https://holzbauforschung-mainz.de/?p=1811</guid>

					<description><![CDATA[<p>Climate change as an interdisciplinary challenge for timber engineering research. The Holzbauforschung Mainz and their partners made an active contribution to climate protection with the development of unused building material resources by upgrading a "problematic" hardwood range. The interdisciplinary team with different research focuses has set themselves a common goal: the development and provision of<span class="post-excerpt-end">&#8230;</span></p>
<p class="more-link"><a href="https://holzbauforschung-mainz.de/climate-change/" class="themebutton">Read More</a></p>
<p>Der Beitrag <a href="https://holzbauforschung-mainz.de/climate-change/">Climate change as an interdisciplinary challenge</a> erschien zuerst auf <a href="https://holzbauforschung-mainz.de">Holzbauforschung Mainz | Timber and Plastics Research Group Mainz UAS</a>.</p>
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	<p>The Holzbauforschung Mainz and their partners made an active contribution to climate protection with the development of unused building material resources by upgrading a "problematic" hardwood range. The interdisciplinary team with different research focuses has set themselves a common goal: the development and provision of new raw material sources for high-quality building products in structural timber construction as part of the sustainable forest management and ecological forest conversion.</p>
<p>Forests cover a third of Germany's land area. They are valuable ecosystems, recreational areas and important suppliers of raw materials at the same time. Global warming is also affecting the forest ecosystem. Extreme weather events are already leaving clear traces. Increasing dry periods and extreme weather are affecting the stability, vitality and performance of the forest. In order for the forest to be able to provide its diverse ecosystem services such as wood production, filtering and storing groundwater, storing carbon and preserving biodiversity, management must be sustainable. By establishing the Forest Climate Fund, the Federal Government was underlining the importance of our forest ecosystems and the positive effects of sustainable forest management and wood use on climate protection.</p>
<p>The <a href="https://holzbauforschung-mainz.de/">Holzbauforschung Mainz</a> is also making an active contribution to this together with its partners as part of the joint research project <em>GreenOakBuilding</em>. In this project, an interdisciplinary team of scientists with their different research focuses on <a href="https://www.fva-bw.de/en/top-meta-navigation/departments/forest-utilisation">forest utilization and wood physics</a>, <a href="https://www.hochschule-trier.de/en/gestaltung/reasearch-and-projects/research/holzkompetenzzentrum">construction and digital construction</a> as well as <a href="https://holzbauforschung-mainz.de/">wood-hybrid construction and wood mechanics</a> have set themselves a common goal: the development and provision of new raw material sources for high-quality building products in structural timber construction as part of the sustainable management of our native forests and ecological forest conversion.</p>
<p>These resources include small-diameter logs from oak, which are economically uninteresting for the rapidly growing construction sector due to its growth characteristics and long rotation period until harvest. By combining traditional processes and knowledge of the forestry and carpentry trades with the latest results of component and material research, from field studies to non-destructive component testing with optical measurement value recognition to the validation of results from X-ray volume tomography, these previously unused hardwood assortments receive an "upgrade" to a sought-after renewable raw material via their digital twin and form an environmentally friendly, carbondioxide-storing and resource-saving alternative to the dominant mineral or metallic building materials. For test and demonstration purposes, a reference building in the form of a hall that can be used for forestry purposes has being built. The findings obtained will be checked and validated on the demonstration object. This is intended to create the basis for the use of small oak wood or similar assortments for higher-quality use in the construction sector in order to introduce the previously hardly used and problematic raw wood assortments to a multi-stage cascade use.</p>
<p>Today, it is in line with the ecological understanding of many people to use resources as efficiently as possible. This understanding is also the basis of the joint research project <em>GreenOakBuilding</em>. According to the 2020 logging statistics, a fifth of the timber harvest was either thermally recycled or not recycled at all. This also includes the "problematic" assortment examined here. Half of the total logging was carried out as damaged timber. The effects of climate change with long dry periods in previous years favored the rapid spread of the bark beetle with massive damage mainly to Norway spruce, Nordman fir and Douglas fir. One goal of ecological forest conversion is therefore to mix coniferous forest cultures with more resistant hardwood species. Perhaps the interdisciplinary research project<em> GreenOakBuilding can </em>make a small contribution here by using the necessary increase in the number of climate-resilient hardwood assortments sustainably in the coming decades and using modern classification methods as part of forest management to ensure long-term and high-quality use in construction.</p>
<p>Read the full story at <a href="https://www.zeit.de/angebote/forschungskosmos/wissen-wirksam-machen/hs-mainz/klimawandel-als-interdisziplinaere-herausforderung/index">Hochschule Mainz: Klimawandel als interdisziplinäre Herausforderung | ZEIT ONLINE</a> (in German), or check out our project page <a href="https://holzbauforschung-mainz.de/research/greenoakbuilding/">GreenOakBuilding - Holzbauforschung Mainz  |  Timber and Plastics Research Group (holzbauforschung-mainz.de)</a>.</p>
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</div><p>Der Beitrag <a href="https://holzbauforschung-mainz.de/climate-change/">Climate change as an interdisciplinary challenge</a> erschien zuerst auf <a href="https://holzbauforschung-mainz.de">Holzbauforschung Mainz | Timber and Plastics Research Group Mainz UAS</a>.</p>
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