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Load Transfer Analysis of Cracked Bolted Joints

机译:裂纹螺栓接头的负载转移分析

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Three-dimensional finite element model of a cracked bolted joint has been developed in the non-linear finite element code MSC.Marc and attempts were made to validate it by comparing results with those of experiments and other finite element. Issues in modeling the contact between the joint parts, which affect the accuracy and efficiency of the model, were presented. Experimental measurements of load transfer were compared with results from finite element analysis. The results show that three-dimensional finite element model of cracked bolted joint can produce results in close agreement with experiment. Three-dimensional effects such as bolt titling, seconding and through-thickness variations in stress and strain are well represented by such models. Three-dimensional finite element analysis was also used to study the effects of hole mod and crack on the load transfer behaviour of single lap bolted joints. The results show that hole mode has big effect on load transfer of cracked bolted joint. In the whole progress of crack growth, the load transfer through bolt 1 decrease, and almost all of the load duduction of bolt 1 transfer into blot 2 rather than into bolt 3.
机译:已经在非线性有限元码中开发了裂纹螺栓接头的三维有限元模型MSC.MARC,并通过将结果与实验和其他有限元素进行比较来验证它。提出了影响模型精度和效率的关节部件之间的接触的问题。将负载转移的实验测量与有限元分析的结果进行比较。结果表明,裂纹螺栓接头的三维有限元模型可以产生与实验密切一致的结果。诸如螺栓标题的三维效应,应力和应变的螺栓标题,透射和贯穿厚度变化很好地由这种模型表示。三维有限元分析还用于研究孔MOD和裂纹对单圈螺栓接头的负荷转移行为的影响。结果表明,孔模式对裂纹螺栓接头的负载转移具有大量影响。在裂缝生长的整个进展中,通过螺栓1的负载传递减小,并且几乎所有螺栓1的负载抚养传递到印迹2中而不是进入螺栓3。

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