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Tolerance-based Variations in Solid Modeling

机译:实体建模中基于公差的变化

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摘要

Information on tolerances and attributes of mechanical parts and assemblies is crucial for many activities in a product's life cycle. Tolerance design is a complex task because many factors (functional, technological and economical) should be considered. It is an iterative process, starting from a first tolerances assignment and ending with the definition of their optimal values. Once all tolerances have been assigned to each pan of an assembly, tolerance analysis is performed. This stage aim is to evaluate if the combined effects of the assigned tolerances let the design requirements be met. Then, feasible and economical aspects are considered on the basis of both available processes and cost evaluations. The whole tolerance design stage is usually defined as tolerance synthesis. The focus of this work is the discussion of the algorithms to model the geometrical variations, of each part of an assembly, allowed by geometric tolerances. This involves the change of the boundary nominal representation of a part face on the basis of the assigned dimensional and geometric tolerances. At present, the developed algorithms are able to simulate flatness, location and orientation. The modified pans, generated by tolerance simulation, may be used to evaluate the overall assemblability and, then, to verify the assembly functional requirements.
机译:机械零件和组件的公差和属性信息对于产品生命周期中的许多活动至关重要。公差设计是一项复杂的任务,因为应考虑许多因素(功能,技术和经济因素)。这是一个反复的过程,从第一个公差分配开始,直到定义其最佳值为止。将所有公差分配给装配体的每个平底锅后,便会执行公差分析。该阶段的目的是评估分配的公差的综合影响是否满足设计要求。然后,在可用过程和成本评估的基础上考虑可行和经济方面。整个公差设计阶段通常定义为公差综合。这项工作的重点是讨论在几何公差允许的范围内对装配的每个零件的几何变化建模的算法。这涉及根据分配的尺寸和几何公差更改零件面的边界标称表示。目前,开发的算法能够模拟平面度,位置和方向。通过公差模拟生成的修改后的平底锅可用于评估整体可组装性,然后验证组装功能要求。

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