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首页> 外文期刊>SAE International Journal of Passenger Cars - Mechanical Systems >CAE Applications and Techniques used in Calculating the Snaps Insertions and Retentions Efforts in Automotive Trims
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CAE Applications and Techniques used in Calculating the Snaps Insertions and Retentions Efforts in Automotive Trims

机译:CAE应用程序和技术,用于计算汽车饰件的按扣插入量和保持力

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摘要

A snap-fit is a form-fitting joint, which is used to assemble plastic parts together. Snap-fits are available in different forms like a projecting clip, thicker section or legs in one part, and it is assembled to another part through holes, undercuts or recesses. The main function of the snap-fit is to hold the mating components, and it should withstand the vibration and durability loads. Snap-fits are easy to assemble, and should not fail during the assembling process. Based on the design, these joints may be separable or non-separable. The non-separable joints will withstand the loads till failure, while separable joints will withstand only for the design load. The insertion and the retention force calculation for the snaps are very essential for snap-fit design. The finite element analysis plays a very important role in finding the insertion and the retention force values, and also to predict the failure of the snaps and the mating components during this process. The snap insertion and retention simulation is highly non-linear, due to the non-linear material behavior and contact between the mating components. This paper explains the various techniques and methodology used to predict the snaps insertion, and the retention force for different types of snap-fits.
机译:卡扣配合是一种压合接头,用于将塑料零件组装在一起。卡扣配合有不同的形式,例如突出的夹子,较厚的部分或一个部分中的支腿,它通过孔,底切或凹口组装到另一部分。卡扣配合的主要功能是固定配合部件,并且应承受振动和耐用载荷。卡扣件易于组装,并且在组装过程中不会失效。根据设计,这些关节可以是可分离的也可以是不可分离的。不可分离的接头将承受载荷直至失效,而可分离的接头将仅承受设计载荷。卡扣的插入和保持力计算对于卡扣配合设计非常重要。有限元分析在找到插入力和保持力值,以及预测在此过程中卡扣和配合部件的失效方面起着非常重要的作用。由于非线性材料的行为和配合部件之间的接触,卡扣的插入和保持模拟是高度非线性的。本文介绍了用于预测按扣插入的各种技术和方法,以及不同类型按扣配合的保持力。

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