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Bolt-plate contact assemblies with prestress and external loads: Solved with super element technique

机译:带有预应力和外部载荷的螺栓板接触组件:通过超单元技术解决

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In dynamically loaded bolted assemblies fatigue is the designing factor. The primary quantity that controls the fatigue is the part of the external load that is transferred to the bolt, as described by the ratio between transferred load to external load. In an idealized setting this ratio can be expressed by a stiffness ratio between the plate members and the bolt. The ratio of transferred load is, however, highly dependent on the size and position of the external loading.rnThe bolt-plate/member connection is modelled using the finite element technique. The modelling includes contact between bolt and members and between the clamped member plates. The modelling includes the prestress that is described by a single scalar value. This prestressed state is followed by an arbitrary external load case.rnIn this paper a finite element technique with super elements is applied to solve the contact problem of the combined prestress and external load in an overall non-iterative way. The conclusions are that it is difficult to make general design rules but in most cases the standard calculation methods will underestimate the strength of the connections. However for some specific loading situations this might not be the case.
机译:在动态加载的螺栓组件中,疲劳是设计因素。控制疲劳的主要量是传递到螺栓的外部负载的一部分,如传递的负载与外部负载之间的比率所描述。在理想的设置中,该比率可以由板构件和螺栓之间的刚度比率表示。但是,传递的负载比率在很大程度上取决于外部负载的大小和位置。rn螺栓板/构件的连接使用有限元技术进行建模。建模包括螺栓与构件之间以及夹紧的构件板之间的接触。建模包括由单个标量值描述的预应力。在这种预应力状态下会出现任意外部载荷情况。本文采用超单元有限元技术以整体非迭代的方式解决预应力与外部载荷组合的接触问题。结论是很难制定通用的设计规则,但是在大多数情况下,标准的计算方法会低估连接的强度。但是,对于某些特定的加载情况,情况可能并非如此。

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