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首页> 外文期刊>Journal of Computing and Information Science in Engineering >Geometrical Simulation of Multiscale Toleranced Surface With Consideration of the Tolerancing Principle
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Geometrical Simulation of Multiscale Toleranced Surface With Consideration of the Tolerancing Principle

机译:考虑公差原理的多尺度公差表面的几何模拟

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Surface quality and accuracy are the most important factors that affect the performance and life cycle of products. Surface deviations are confirmed to be nonstationary random signals. They show characteristics of randomness, irregularity and multiscale. For precise components, those deviations, i.e., the location/orientation deviations, form deviations, waviness and roughness are constrained by different scales of tolerances. In addition, tolerancing principles are specified to deal with the relationship between geometrical and dimensional deviations of the workpiece. Conventional modeling methods are unable to express surfaces with those features. This paper proposed a new method for geometrical modeling of multiscale toleranced workpiece with consideration of tolerancing principles. The workpiece deviations are decomposed into different scale of deviations. Each scale of deviations is expressed as the products of the normalized deviations and deviation factors. To balance the conflict between computing time and accuracy, a multilevel displaying method is developed. Those deviations are presented at different levels. In the simulation, each scale of tolerances and the tolerancing principles are integrated into the geometrical model of the workpiece. At the end of this paper, a case study was carried out to validate the proposed method.
机译:表面质量和准确性是影响产品性能和生命周期的最重要因素。表面偏差被确认为非平稳随机信号。它们表现出随机性,不规则性和多尺度特征。对于精确的组件,这些偏差,即位置/方向偏差,形状偏差,波纹度和粗糙度受到不同比例公差的限制。另外,规定了公差原理以处理工件的几何尺寸偏差之间的关系。传统的建模方法无法表达具有这些特征的表面。本文提出了一种考虑公差原则的多尺度公差工件几何建模的新方法。工件偏差被分解为不同的偏差等级。每个偏差量表均表示为标准化偏差和偏差因子的乘积。为了平衡计算时间和准确性之间的冲突,开发了一种多级显示方法。这些偏差在不同的级别上显示。在仿真中,公差的每个尺度和公差原理都被集成到工件的几何模型中。最后,通过案例研究验证了该方法的有效性。

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