首页> 外文会议>International Conference on Historic Ships >TIMBER CONSTRUCTION: AN EXPERIMENTAL ASSESSMENT OF THE STRENGTH OF SCARF JOINTS AND THE EFFECTIVENESS OF VARIOUS ADHESIVES FOR LAMINATED WOOD
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TIMBER CONSTRUCTION: AN EXPERIMENTAL ASSESSMENT OF THE STRENGTH OF SCARF JOINTS AND THE EFFECTIVENESS OF VARIOUS ADHESIVES FOR LAMINATED WOOD

机译:木材结构:对围巾关节强度的实验评估以及层压木材各种粘合剂的有效性

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Timber construction has recently seen a significant regain of interest across a range of industries, owing to contemporary concerns for sustainability. In the marine industry, historic principles of traditional wooden boatbuilding remain present, with empirical rules still common practice, as is the case for scarf joints. Moreover, laminated wood is made more attractive and efficient thanks to modern adhesives. However, with the progresses made in structural analysis, these assemblies can now be refined based on scientifically informed evidence. Consequently, this paper will employ destructive testing to tackle two distinct cases. On the one hand, the strength of feathered (plain) scarf joints as a function of their slope will be evaluated. On the other hand, the effectiveness of a range of adhesives will be ascertained for the purpose of laminated manufacturing. Ultimately, the results will be compared to both the strength of solid wood and the mechanical properties assumed by modern scantling regulations, revealing significant differences. The research findings provide a better understanding of these fundamental timber construction principles, supporting designers and builders alike in making informed choices and promoting safer regulatory compliance. It is also anticipated these findings will impact structural design beyond the wooden boatbuilding field, with applications in sustainable buildings and architecture.
机译:由于当代对可持续性的关注,木材建筑最近看到跨各种行业的兴趣重新获得。在海洋产业中,传统木制船舶遗留原则仍然存在,具有实证规则仍然普遍的做法,就像围巾关节的情况一样。此外,由于现代粘合剂,层压木材更具吸引力和高效。然而,随着结构分析所取得的进展,现在可以基于科学知情的证据来改进这些组件。因此,本文将采用破坏性测试来解决两个明显的情况。一方面,将评估羽毛状(普通)围巾关节的强度作为其斜率的函数。另一方面,对于层压制造的目的,将确定一系列粘合剂的有效性。最终,结果将与现代柔软法规假设的实木强度和机械性能进行比较,揭示显着差异。研究结果对这些基本木材建设原则提供了更好的了解,支持设计师和建筑商,同时提供明智的选择和推动更安全的监管合规性。还有预期这些发现将影响木船织机领域的结构设计,可持续建筑和建筑中的应用。

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