Effect of Loading Speed on the Mechanical Properties of Nail Joints

Shervin Shameli Derakshan, Lina Zhou, C. Ni
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Abstract

Wood shear walls are the main lateral load resisting systems in light wood frame buildings to resist the wind and seismic loads. Sheathing to lumber nail connections are regarded as the key components that control the resistance and failure modes of wood shear walls. Considerable experimental tests have been conducted on performance of nail joints or wood shear walls under both static and reversed cyclic loads. However, these tests were usually conducted under different loading speed causing specimen failure in 1 min to an hour. It is unclear how the loading speed will affect the test results of nail joints or wood shear walls. Research on these topics is limited. This paper aims to evaluate the effect of loading speed on the mechanical characteristics of nail joints. 72 specimens have been tested under various loading speeds, ranging from 0.05 mm/s to 0.5 mm/s for monotonic tests and 1.5 mm/s to 15 mm/s for reversed cyclic tests. The range of loading speed was selected based on the total estimated loading time that both monotonic and reversed cyclic tests fail within around 1 min to 10 min. Two groups of nail joints, comprising two common nail sizes and two sheathing thicknesses, were assessed under both monotonic and reversed cyclic loads. From the test results, the effect of loading speed on the mechanical properties of nail joints was determined.
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加载速度对钉接头力学性能的影响
木剪力墙是轻型木框架建筑中主要的抗风、抗地震荷载的侧向荷载体系。护墙板与木材钉连接是控制木材剪力墙抗力和破坏模式的关键构件。在静力和反向循环荷载作用下,对钉缝或木剪力墙的性能进行了大量的试验研究。然而,这些试验通常在不同的加载速度下进行,导致试样在1分钟至1小时内破坏。目前还不清楚加载速度如何影响钉缝或木剪力墙的试验结果。对这些主题的研究是有限的。本文旨在评价加载速度对钉节点力学特性的影响。72个试件在不同加载速度下进行了测试,单调试验的加载速度为0.05 mm/s至0.5 mm/s,反循环试验的加载速度为1.5 mm/s至15 mm/s。加载速度的范围是根据单调和反向循环试验在大约1分钟到10分钟内失效的总估计加载时间来选择的。在单调和反向循环荷载下,评估了两组钉节点,包括两种常见的钉尺寸和两种护套厚度。根据试验结果,确定了加载速度对钉接头力学性能的影响。
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