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An Empirical Component-Based Model for High-Strength Bolts at Elevated Temperatures

机译:基于经验的高温高强度螺栓的基于模型的模型

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摘要

High-strength structural bolts are used in nearly every steel beam-to-column connection in typical steel building construction practice. Thus, accurately modeling the behavior of high-strength bolts at elevated temperatures is crucial for properly evaluating the connection capacity, and is also important in evaluating the strength and stability of steel buildings subjected to fires. This paper uses a component-based modeling approach to empirically derive the ultimate tensile strength and modulus of elasticity for grade A325 and A490 bolt materials based on data from double-shear testing of high-strength 25 mm (1 in) diameter bolts at elevated temperatures. Using these derived mechanical properties, the component-based model is then shown to accurately account for the temperature-dependent degradation of shear strength and stiffness for bolts of other diameters, while also providing the capability to model load reversal.
机译:在典型的钢结构建筑实践中,几乎所有的钢梁到柱连接都使用高强度结构螺栓。因此,准确模拟高强度螺栓在高温下的行为对于正确评估连接能力至关重要,对于评估遭受火灾的钢结构的强度和稳定性也很重要。本文使用基于组件的建模方法,根据高温下直径25毫米(1英寸)高强度螺栓的双重剪切测试数据,凭经验得出A325和A490级螺栓材料的极限拉伸强度和弹性模量。然后,使用这些导出的机械特性,可以显示基于组件的模型,该模型可以准确地说明与温度有关的其他直径螺栓的剪切强度和刚度下降,同时还提供了反向载荷建模的功能。

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