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Design and Evaluation of Quadruple System Protection Valve Piston Assembly using Finite Element Method

机译:使用有限元法的四重系统保护阀活塞组件的设计与评价

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This paper presents a systematic procedure for design and evaluation of snap fit for Quadruple System Protection Valve (QSPV) piston assembly. The QSPV piston is assembled with housing by means of snap joint. Snap joints are a very simple, economical and rapid way of joining two different components. All types of snap joints have in common the principle that a protruding part of one component, e.g., a hook, stud or bead is deflected briefly during the joining operation and catches in a depression (undercut) in the mating component. After the joining operation, the snap-fit features should return to a stress-free condition. The joint may be separable or inseparable depending on the shape of the undercut; the force required to separate the components varies greatly according to the design. It is particularly important to bear the following factors in mind when designing snap joints: Mechanical load during the assembly operation and force required for assembly.
机译:本文介绍了对四重系统保护阀(QSPV)活塞组件进行设计和评估的系统性程序。 QSPV活塞通过卡扣接头组装有壳体。弹簧接头是加入两个不同部件的非常简单,经济且快速的方式。所有类型的卡扣接头具有共同的原理,即一个组分的突出部分,例如钩,螺柱或珠子在接合操作期间短暂地偏转并且在配合组分中的凹陷(底切)中捕获。在加入操作之后,快组件应返回无应力状态。关节可以根据底切的形状可分离或不可分割;分离组件所需的力根据设计而变化大大变化。在设计卡扣时,承担以下因素尤为重要:在组装操作和组装所需的力期间机械负载。

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