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Predicting Strength of Wood I-Joist with a Circular Web Hole

机译:带有圆形腹板孔的木材工字梁的强度预测

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Web holes are often made in wood I-joists to allow passage of services. Design properties of wood I-joists with a web hole are commonly developed through testing which leads to empirical design information. This paper describes a mechanics-based method to predict the strengths of wood I-joists with a circular web hole that is suitable for implementation as a design tool. Curved beam theory is used to compute stresses around a hole. Peak tensile stresses obtained from curved beam analysis agree well with those predicted using the finite-element method. Failure load is attained by the application of fracture mechanics based finite area method. The method developed is used to predict failure loads of wood I-joists of different depths with different web hole sizes. Simplification of the method leads to the development of a simple expression that can be used for engineering design. It is found that the predicted strengths are in a good agreement with the corresponding test results. The calculation method developed can potentially replace the testing approach generally adopted by the wood I-joist industry.
机译:腹板孔通常用木材工字梁制成,以允许服务通过。带有网孔的木材工字托梁的设计特性通常是通过测试得出的,从而得出经验性设计信息。本文介绍了一种基于力学的方法来预测具有圆形腹板孔的木材工字梁的强度,该方法适合用作设计工具。弯曲梁理论用于计算孔周围的应力。通过弯曲梁分析获得的峰值拉伸应力与使用有限元方法预测的峰值拉伸应力非常吻合。通过基于断裂力学的有限区域方法获得破坏载荷。所开发的方法用于预测具有不同腹板孔尺寸的不同深度的木材工字梁的破坏载荷。方法的简化导致开发了可用于工程设计的简单表达式。发现预测的强度与相应的测试结果非常吻合。所开发的计算方法有可能替代木材工字梁行业普遍采用的测试方法。

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