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Toe-Screwed Cross-Laminated Timber Connection Design and Nonlinear Modeling

机译:脚趾螺纹交叉层压木材连接设计和非线性建模

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摘要

Abstract This research investigated the mechanical characteristics of cross-laminated timber (CLT) connections fastened with structural wood screws, also known as self-tapping screws (STS). The CLT connection assemblies were toe-screwed (TS) at 45° and cyclically tested in tension and in-plane shear to evaluate the failure modes and applicability as seismic connections in CLT shear walls. The connection assemblies were representative of full-scale CLT shear walls connected to CLT floors as often seen in platform construction. Toe-screwed CLT connections exhibited screw fracture, head pull-through, and pinched hysteresis loops. Mechanical connection properties and backbone curves were extracted for comparison with design estimates. A head pull-through design method was developed, which predicted peak strength within 5% of test results. Connection parameters for ASCE/SEI 41 idealized-component curves were presented for use in performance-based design nonlinear-static pushover analysis. Combining the presented ASCE/SEI 41 parameters with the proposed design method and test results provides a simple and reasonably accurate nonlinear toe-screwed connection response curve. Partially threaded washer-headed screws were found to be superior to fully threaded screws in seismic applications due to their 15 times greater ultimate deformation capacity, substantially greater energy dissipation, similar peak strength, and similar elastic stiffness. However, the yield strength of partially threaded STS was found to be 48% of the yield strength of fully threaded STS.
机译:摘要本研究调查了用结构木螺钉固定的交叉层压木材(CLT)连接的机械特性,也称为自攻螺钉(STS)。 CLT连接组件在45°处螺纹螺纹(TS),并在张力和面内剪切中循环测试,以评估失效模式和适用性作为CLT剪切壁中的地震连接。连接组件代表了连接到CLT地板的全尺寸CLT剪切墙,如在平台结构中经常看到的。脚趾螺纹连接显示出螺杆骨折,头部拉动和夹持滞后环。提取机械连接性能和骨干曲线以与设计估计进行比较。开发了头引导设计方法,预测了测试结果的5%的峰值强度。提出了ASCE / SEI 41的连接参数,用于基于性能的设计非线性静态推送分析。将呈现的ASCE / SEI 41参数与所提出的设计方法和测试结果组合,提供了一种简单且相当准确的非线性脚趾螺纹连接响应曲线。由于最终变形容量的15倍,耗能量大,峰强度相似,类似的弹性刚度,部分螺纹垫圈螺钉被发现优于地震应用中的完全螺纹螺钉。然而,发现部分螺纹STS的屈服强度为完全螺纹STS的屈服强度的48%。

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