一种用于固定复杂形状零件的改进夹具解决方案

B. Balasuriya, H.W.P. Bhanuka, Hkt Sampath, A. Kulasekera, N. Jayaweera
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引用次数: 1

摘要

制造业在制造复杂形状部件时面临着诸多挑战。其中一个挑战是如何握住形状复杂的部件。对于这种情况,使用各种专用夹具方法,降低了灵活性并增加了制造的初始成本。销式夹具是复杂形状零件的主要夹具方法。但销式夹具的点加载会导致表面损伤,降低产品质量。因此,引入了各种方法来减少点荷载的负面影响。颗粒干扰就是最近引起人们兴趣的一种方法。颗粒状干扰材料所能提供的固定力取决于膜的性能等多种因素。本文研究了颗粒卡销式方法提供的夹紧力随颗粒卡销膜厚度的变化规律,以及负压变化对颗粒卡销夹紧力的影响规律。本研究中的膜是用简单的浸渍技术由乳胶制成的。实验结果表明,夹紧力随夹紧膜厚度的增加和负压的增大而增大。此外,还试验了一种新的结构,即在两个销上安装管状膜以增加固定力。实验表明,这种新型结构可以获得更高的夹具力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An Improved Fixturing Solution for Holding Complex Shaped Components
Manufacturing industry faces several challenges when manufacturing complex shaped components. One such challenge is holding complex shaped components. For such instances, various dedicated fixturing methods are used, reducing the flexibility and increasing the initial cost in manufacturing. Pin type fixturing methods are the dominating method of fixturing for complex shaped components. But the point loading from pin type fixturing methods can lead to surface damage reducing the quality of the product. So various methods have been introduced to reduce the negative effects from point loading. Granular jamming is one such method that has been of recent interest. The fixturing force granular jamming materials can provide depends on various factors including membrane properties. This research paper describes how the fixturing force provided by granular jammed pin type method vary on the thickness of the granular jamming membrane and how negative pressure variation affect the fixturing force from granular jamming. The membrane in this study is made out of latex using simple dipping techniques. According to the results of experiments carried out, fixturing force increases with increase of thickness in jamming membrane and when negative pressure is increased. Further, a novel configuration to increase fixturing force with a tubular membrane mounted on two pins was experimented. Experiments revealed that higher fixturing force can be obtained through such a novel configuration.
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