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Three-dimensional numerical analyses of load-bearing behavior and failure of multiple double-shear dowel-type connections in timber engineering

机译:木材工程中多个双剪切销钉式连接的承载行为与破坏的三维数值分析

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摘要

The goals of three-dimensional numerical studies of wooden double-shear dowel-type connections are the determination of the load-carrying capacity and the analysis of the load-bearing behavior and the failure of the construction. A suitable finite-element modeling requires different element and constitutive formulations with respect to material, contact and path-following. Particularly, the constitutive modeling of wood is of great importance. Therefore, element approaches and material models are introduced, which take into consideration the ductile and the brittle failure behavior of wood. In this way, failure mechanisms like plasticizing and cracking are represented realistically. The verification of the FE-model-ing is carried out on the basis of structural experiments and nonlinear numerical simulations including the post-failure domain. These simulations predict the load-carrying capacity very accurately and allovy for a deeper analysis of the failure mechanisms.
机译:木制双剪切销钉式连接的三维数值研究的目标是确定承载能力,分析承载性能和结构破坏。合适的有限元建模在材料,接触和路径跟随方面需要不同的元素和本构关系。特别地,木材的本构模型非常重要。因此,引入了考虑木材延性和脆性破坏行为的单元方法和材料模型。这样,就可以真实地表现出诸如塑化和开裂之类的破坏机制。 FE模型的验证是基于结构试验和包括后失效域在内的非线性数值模拟进行的。这些模拟可以非常准确,准确地预测承载能力,以便对故障机理进行更深入的分析。

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