热环境下复合材料螺栓连接渐进失效分析的有限元研究

S. Goswami
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引用次数: 33

摘要

采用有限元法对复合材料螺栓连接在热环境下的渐进破坏进行了研究。重点一直放在这个问题的计算方面。采用不同的破坏准则计算了极限破坏载荷和销轴承应力,并将计算结果与公开文献中发表的实验数据进行了比较。在现实中,螺栓连接已被用于各种情况下的负荷转移量相对较高,在许多场合热效应是一个重要的考虑因素。因此,本文还考虑了温度对材料性能退化的影响。对不同的层压板进行了渐进式损伤分析,以给出超出失效载荷的完整载荷-挠度路径,这将作为未来的参考。为了模拟实验室环境中的实验情况,将销体建模为刚性物体,并将荷载作为位移控制过程施加于结构上。分析中考虑了螺栓与层板之间的接触。已经为ABAQUS软件开发了许多“用户子程序”,以将Hashin、最大应力和Tsai-Wu失效准则纳入分析。对上述各种众所周知的失效准则的有效性和性能进行了评价,并以图形形式给出了结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Finite Element Investigation on Progressive Failure Analysis of Composite Bolted Joints Under Thermal Environment
The progressive failure analysis of composite bolted joints under thermal environment has been investigated using the finite element method. The emphasis has been on the computational aspects of the problem. The ultimate failure loads and pin-bearing stresses have been computed using different failure criteria and the results have been compared with the experimental data as published in the open literature. In reality, bolted joints have been employed to various situations where the amount of load to be transferred is relatively high and on many occasions thermal effect is an important consideration. So the effect of material property degradation due to temperature has also been considered in this investigation. Progressive damage analyses have been performed for different laminates to give complete load-deflection path beyond failure load that will serve as a future reference. The pin has been modeled as a rigid object and load has been imparted on the structure as a displacement-controlled process to simulate the experimental situation in the laboratory environment. Contact between the bolt and the laminate has been considered in the analysis. A number of “User Subroutines” for ABAQUS software have been developed to incorporate Hashin, maximum stress, and Tsai-Wu failure criteria in the analysis. The effectiveness and performance of various well-known failure criteria as mentioned above have been evaluated and the results have been presented in graphical form.
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