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Parameterization equations for the nonlinear connection slip applied to the anisotropic embedment behavior of wood

机译:非线性连接滑移的参数化方程应用于木材的各向异性嵌入行为

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摘要

Nonlinear numerical models for the engineering design of mechanical connections in anisotropic materials require nonlinear material behavior of their components, which are essentially determined by material or structural testing. Herein, a multi-step approach for the parameterization of the nonlinear and anisotropic connection slip behavior is presented and applied to the ductile embedment behavior of steel dowels in wood. For this purpose, previously proposed regression functions for the slip behavior are reviewed, and further possible equations are discussed. Their suitability in the description of typical shapes of slip curves observed in connection testing is assessed before certain combinations are applied to an experimental dataset of embedment tests of steel dowels embedded in Laminated Veneer Lumber. The dependence of the regression parameters on the displacement range in the experimental dataset and the benefit of using parameters with a physical interpretation, for being able to exploit connection test data reported in literature, is highlighted.
机译:用于各向异性材料中机械连接的工程设计的非线性数值模型要求其组件的非线性材料行为,这基本上由材料或结构测试确定。在此,提出了一种用于非线性和各向异性连接滑移特性参数化的多步骤方法,并将其应用于木材中的木销的延性嵌入行为。为此,回顾了先前提出的滑移行为回归函数,并讨论了其他可能的方程式。在将某些组合应用于嵌入单板木材中的木销钉嵌入测试的实验数据集之前,要评估它们在描述连接测试中观察到的滑移曲线的典型形状时的适用性。强调了回归参数对实验数据集中位移范围的依赖性以及使用具有物理解释的参数的好处,以便能够利用文献中报道的连接测试数据。

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