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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >A combined contact elasticity and finite element-based model for contact load and pressure distribution calculation in a frictional workpiece-fixture system
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A combined contact elasticity and finite element-based model for contact load and pressure distribution calculation in a frictional workpiece-fixture system

机译:基于接触弹性和有限元的组合模型,用于摩擦夹具系统中的接触载荷和压力分布计算

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摘要

Contact forces between workpiece and fixture define fixture stability during clamping and influence workpiece accuracy during machining. In particular, forces acting in the contact region are important for understanding deformation of the workpiece at the contact region. This paper presents a model that combines contact elasticity with finite element methods to predict the contact load and pressure distribution at the contact region in a workpiece-fixture system. The objective is to determine how much clamp forces can be applied to generate adequate contact forces to keep the workpiece in position during machining. The model is able to predict the normal and tangential contact forces as well as the pressure distribution at each workpiece-fixture contact in the fixturing system. Model prediction is shown to be in good agreement with known industry practice on clamp force determination. The presented method has no limits on the types of materials that can be analyzed.
机译:工件和夹具之间的接触力定义了夹紧过程中夹具的稳定性,并影响了加工过程中工件的精度。特别地,作用在接触区域中的力对于理解工件在接触区域处的变形是重要的。本文提出了一种将接触弹性与有限元方法相结合的模型,以预测工件夹具系统中接触区域的接触载荷和压力分布。目的是确定可以施加多少夹紧力以产生足够的接触力,以在加工过程中将工件保持在适当的位置。该模型能够预测夹具系统中每个工件-夹具接触处的法向和切向接触力以及压力分布。结果表明,模型预测与确定夹紧力的行业惯例非常吻合。提出的方法对可以分析的材料类型没有限制。

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