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Geometric Tolerancing in Mechanical Design Using Fractal-Based Parameters

机译:基于分形参数的机械设计中的几何公差

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The submacrogeometric (tolerance) variations of mechanical components have an important impact on product function. The problem of combining tolerance assignment in engineering design with tolerance control in manufacturing and quality assurance presents a continuing challenge to researchers. This paper illustrates the feasibility of using fractal-based methods for the problem of tolerance specification in engineering design. Error data are generated as a function of the fractal dimension using the fractional Brownian motion model and are superposed on an ideal profile of a slider bearing. The consequent changes in performance parameters are studied and the detrimental effect of large variations perceived. This simple case study indicates the potential of the method to be extended for more complex problems.
机译:机械组件的超大尺寸(公差)变化对产品功能有重要影响。将工程设计中的公差分配与制造和质量保证中的公差控制相结合的问题对研究人员提出了持续的挑战。本文说明了在工程设计中使用基于分形方法解决公差规范问题的可行性。使用分数布朗运动模型根据分形维数生成误差数据,并将误差数据叠加在滑动轴承的理想轮廓上。研究了性能参数的随之变化,并观察到较大变化的有害影响。这个简单的案例研究表明该方法有可能扩展到更复杂的问题。

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