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Experimental And Numerical Analysis Of A Stop-splayed Traditional Timber Scarf Joint With Key

机译:带键止裂传统木围巾接头的实验与数值分析

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摘要

Traditionally constructed heavy timber trusses employ scarf joints to transfer tensile forces between lower chord members. Scarf joints significantly impact the global stiffness of heavy timber trusses, yet little is known about their structural behavior. This paper describes a study recently completed on the commonly used stop-splayed scarf joint with a key. Experimental tests were performed on scarf joints replicated from a covered wooden bridge in Pennsylvania and compared to the numerical results of full, three-dimensional finite element models created using ABAQUS. The authors determined that the key has the most influence on scarf joint behavior as its orientation causes it to be loaded in compression perpendicular to grain. Experimental tests also revealed the importance of clamping bolts, without which a limit state of "key rolling" was observed. With two clamping bolts in place, the limit state was shear failure parallel to grain, which provides a more stable failure and a higher ultimate strength. The authors recommend to engineers that the scarf joint not be analyzed as a pure tension member; rather, it should be considered a member subject to combined tension and bending forces.
机译:传统构造的重型木材桁架采用围脖接头在下弦构件之间传递拉力。围巾接缝会严重影响重型木材桁架的整体刚度,但对其结构行为知之甚少。本文介绍了最近完成的一项关于使用钥匙的常开式围巾围巾接头的研究。在宾夕法尼亚州一个有盖木桥上复制的围巾连接处进行了实验测试,并与使用ABAQUS创建的完整三维有限元模型的数值结果进行了比较。作者确定,钥匙对围巾连接行为的影响最大,因为其方向导致钥匙垂直于谷物受到压缩。实验测试还显示了夹紧螺栓的重要性,如果没有夹紧螺栓,则观察到极限状态。在两个紧固螺栓就位的情况下,极限状态是平行于晶粒的剪切破坏,这提供了更稳定的破坏和更高的极限强度。作者建议工程师不要将围巾接头视为纯粹的受拉构件。而是应考虑承受拉力和弯曲力的共同作用。

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