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Position tolerancing in reverse engineering: the fixed fastener case

机译:逆向工程中的位置公差:固定紧固件盒

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The present paper addresses the assignment of geometrical position tolerances in reverse engineering. Specification of manufacturing position tolerances for a reconstructed component of an existing mechanical assembly constitutes a complicated task that requires a well-grounded approach. Among features of size, cylindrical features such as holes in conjunction with pegs, pins, or screws are the most frequently used for critical functions, as are the alignment of mating surfaces or the fastening of mating parts. The relationship between mating features is classified either as a fixed or as a floating fastener type. The presented method focuses on the fixed fastener case. It is based on the systematic formulation of dimensional and geometrical relationships and constrains that allow for rational computer-aided processing and evaluation of the measured data from the reference parts, for which appropriately developed algorithmic tools are used. It is shown that the method is reliable, provides for realistic results, and is also time and cost competent as compared with the conventional trial-and-error methods. A case study demonstrates the concept and method.
机译:本文讨论了逆向工程中几何位置公差的分配。规定现有机械组件的重构部件的制造位置公差是一项复杂的任务,需要有良好的基础。在尺寸特征中,圆柱形特征(例如与钉子,销或螺钉结合的孔)最常用于关键功能,配合表面的对齐或配合零件的固定也是如此。配合特征之间的关系分为固定类型或浮动紧固件类型。提出的方法集中于固定紧固件的情况。它基于尺寸和几何关系和约束的系统表述,可以对参考零件的测量数据进行合理的计算机辅助处理和评估,为此使用了适当开发的算法工具。结果表明,与传统的试错法相比,该方法是可靠的,可提供现实的结果,并且在时间和成本上均具有竞争力。案例研究演示了该概念和方法。

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