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Correlation approach for the Push-Out and full-size bending short-term performances of timber-to-timber slabs with Self-Tapping Screws

机译:具有自攻螺钉的木与木材板的推出和全尺寸弯曲短期性能的相关方法

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摘要

Self-Tapping Screws (STSs) are commonly used to realize many geometrical configurations for connections that are characterized by enhanced stiffness and load-carrying capacity. The analysis of STS joints and composite systems, however, usually requires designers to account for several aspects in their actual load transfer mechanisms, and most of them require refined calculation tools. In this paper, an extended Finite Element (FE) investigation is proposed for timber-to-timber slabs with STS joints, based on full 3D brick models inclusive of Cohesive Zone Modelling (CZM) techniques and damage constitutive laws for the materials in use. The final goal of the study takes advantage of the global and local performance assessment of a selection of STS joints, with careful consideration for their response under a conventional Push-Out (PO) test setup or a full-size bending configuration. As shown, major FE outcomes are discussed to elaborate a design procedure that can be developed on the base of correlation coefficients for maximum force and stiffness calculations in a given slab and loading condition. Major effects due to variable loading configurations are in fact explored at the screw level. Further, geometrically simplified spring-based FE models, that hardly capture the complex behaviour of the examined systems but are largely used in design practice, are presented in comparison to refined FE approaches and literature efforts. As shown, the variation of maximum force and stiffness parameters for STSs is emphasized in the paper for a selection of configurations, and fitting curves are proposed to estimate the STS performance along a given full-size slab, thus suggesting the feasibility and possible generalization of the procedure.
机译:自攻螺钉(STSS)通常用于实现许多用于连接的几何配置,其特征在于增强刚度和承载能力。然而,STS关节和复合系统的分析通常要求设计人员在实际负载转移机制中占几个方面,而且它们中的大多数都需要精细的计算工具。在本文中,提出了一种延长的有限元(Fe)调查,用于采用STS关节的木与木材平板,基于完整的3D砖模型,包括粘性区域建模(CZM)技术和损坏使用中材料的损伤本构规则。该研究的最终目标利用了对STS联合选择的全球和本地性能评估,仔细考虑了在传统推出(PO)测试设置或全尺寸弯曲配置下的反应。如图所示,讨论了主要的FE结果以详细说明可以在给定板坯和装载条件下的最大力和刚度计算的相关系数基础上开发的设计过程。实际上探讨了由于可变加载配置引起的重大影响。此外,与精炼Fe方法和文学努力相比,尚未捕获所检查系统的复杂行为,而几致简化的弹簧基FE模型,但主要用于设计实践。如图所示,在针对各种配置的纸上强调了STS的最大力和刚度参数的变化,提出了拟合曲线沿着给定的全尺寸平板估计STS性能,从而提示可行性和可能的​​概括步骤。

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