Nonlinear finite-element analysis of embedment behavior of metal washer in bolted timber joints

Author:

Teranishi MasakiORCID,Matsubara Doppo,Wakashima Yoshiaki,Shimizu Hidemaru,Kitamori Akihisa

Abstract

AbstractThe pretensioning force in bolted joints enhances the lateral strength of the connections, and causes the embedment of metal washers into wood. Despite the significance of embedment behavior in the design of bolted joints, its mechanism has yet to be fully understood. In this study, the mechanism of the embedment of a metal washer into wood along the radial direction was examined through three-dimensional nonlinear finite-element analysis (FEA). The FEA results were validated by comparing them with experimental results for nine metal washers with different geometries. Moreover, the sensitivity of embedment stiffness and yield load to wooden material constants was also investigated. The numerical results showed good qualitative and quantitative agreement with the experimental results. In addition, the embedment stiffness and yield load were sensitive to the yield stress and Young’s modulus of wood in the radial and tangential directions. The determination of these mechanical properties of wood through material testing is important for reproducing the behavior of the embedment of a metal washer into wood and accurately estimating the yield load and initial stiffness using FEA. This will play a significant role in designing bolted joints.

Funder

Japan Society for the Promotion of Science

Publisher

Springer Science and Business Media LLC

Subject

Biomaterials

Cited by 4 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Progressive damage analysis of embedment of metal washer into timber;Wood Material Science & Engineering;2024-05

2. Elastic interaction in multiple bolted timber joints;Journal of Wood Science;2022-09-02

3. Numerical analyses of timber beams with stop- splayed scarf carpentry joints;Engineering Structures;2022-09

4. Pretension loss in bolted timber joint under external tensile load;European Journal of Wood and Wood Products;2022-05-21

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