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Tolerance analysis of assemblies with sculptured components in composites materials: comparison between an analytical method and a simulation approach

机译:复合材料中带有雕刻零件的装配体的公差分析:分析方法和模拟方法之间的比较

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Purpose - The purpose of this paper is to compare two different tools for tolerance analysis. Tolerance analysis is an important task to design and manufacture high-precision mechanical assemblies; it has received considerable attention in the literature. Many are the tools required to carry out a tolerance analysis, and may be divided into two categories: the analytical models and the statistical software packages. No comparison exists in the literature among these two categories. Design/methodology/approach - This work presents a comparison between two different approaches to tolerance analysis: an analytical method, the variational model, and a statistical software, eM-Tolmate. The comparison has been developed on the same aeronautical case study that constitutes an actual product. Findings - The proposed approach has been applied to an aeronautical case study. The results of the case study show how, when 2D tolerance analysis problems need to be solved, the two adopted tools give the same results. When the complexity of the tolerance analysis problems increases, the statistical software becomes the only choice to use. The new findings of the present paper are related to the fact that computer-aided tolerance analysis software packages remain the only choice to approach actual complex industrial products despite the extensive development of theoretical research. Research limitations/implications - This paper deals with a unique case study. However, the two adopted approaches and the obtained results are general, that is, they may be applied to any assembly. Practical implications - Tolerance analysis is a valid tool to foresee geometric interferences among the components of an assembly, before getting the physical assembly. It involves a decrease of the manufacturing costs. Originality/value - Many are the tools for tolerance analysis, such as different analytical models and different commercial software packages. Some are the comparisons among the different tools in the literature, but they are not exhaustive. Therefore, when a user has to solve an assembly problem to foresee the geometric interferences during the design stage, he/she does not know what to choose. The original contribution of the paper is to address the user's choice through a comparison between an analytical model and a statistical software to solve the tolerance analysis problems of an actual aeronautical assembly.
机译:目的-本文的目的是比较两种不同的公差分析工具。公差分析是设计和制造高精度机械组件的重要任务。它在文献中受到相当多的关注。许多工具是执行公差分析所需的工具,并且可以分为两类:分析模型和统计软件包。这两类文献之间没有比较。设计/方法/方法-这项工作对公差分析的两种不同方法进行了比较:分析方法,变异模型和统计软件eM-Tolmate。比较是在构成实际产品的同一航空案例研究中进行的。调查结果-提议的方法已应用于航空案例研究。案例研究的结果表明,当需要解决2D公差分析问题时,两个采用的工具如何给出相同的结果。当公差分析问题的复杂性增加时,统计软件将成为唯一的选择。本文的新发现与以下事实有关:尽管理论研究得到了广泛的发展,但计算机辅助公差分析软件包仍然是接近实际复杂工业产品的唯一选择。研究局限性/含义-本文涉及一个独特的案例研究。但是,两种采用的方法和获得的结果是通用的,也就是说,它们可以应用于任何组件。实际意义-公差分析是一种有效的工具,可以在获得物理装配体之前预见装配体组件之间的几何干扰。这涉及降低制造成本。原创性/价值-许​​多公差分析工具,例如不同的分析模型和不同的商业软件包。一些是文献中不同工具之间的比较,但并不详尽。因此,当用户必须解决装配问题以预见设计阶段的几何干扰时,他/她不知道该选择什么。本文的最初贡献是通过分析模型和统计软件之间的比较来解决用户的选择,以解决实际航空组件的公差分析问题。

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