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Inspection Strategies and Multiple Geometric Tolerances

机译:检验策略和多重几何公差

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Recent years have seen an increase in the adoption of geometric tolerances. It is often possible to find several geometric tolerances defined on a single part. However, this poses inspection issues: the values of the geometric error may be interrelated; therefore, the presence of multiple tolerances should be considered in inspection design. In this work, a methodology is proposed for planning CMM sampling strategies for multiple tolerances based on the minimization of inspection costs. A model for inspection costs is proposed, which takes into account the influence of the inspection strategy on measurement and inspection errors costs, both directly and through its impact on measurement uncertainty. The cost is then minimized by means of a suitable optimization algorithm, thus defining an optimal sampling strategy. The approach can be adopted both to optimize generic, uniform, sampling strategies, and to generate manufacturing specific strategies, which consider the manufacturing signature, i.e., the part shape deviation from design nominal inherent to a specific manufacturing process. The latter kind of strategies is shown to be the most effective to minimize costs. A case study which illustrates the methodology is presented.
机译:近年来,几何公差的采用有所增加。通常可以找到在单个零件上定义的几个几何公差。但是,这带来了检查问题:几何误差的值可能相互关联;因此,在检查设计中应考虑存在多个公差。在这项工作中,提出了一种基于检验成本最小化来计划CMM采样策略以实现多个公差的方法。提出了一种检验成本模型,该模型直接或通过其对度量不确定性的影响,考虑了检验策略对度量和检验误差成本的影响。然后通过适当的优化算法将成本降至最低,从而定义了最佳采样策略。可以采用该方法来优化通用,统一,抽样策略,并生成考虑制造特征(即零件形状与特定制造过程固有的设计标称偏差)的特定制造策略。后一种策略显示出最有效地降低成本。案例研究说明了该方法。

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