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首页> 外文期刊>Mechanism and Machine Theory: Dynamics of Machine Systems Gears and Power Trandmissions Robots and Manipulator Systems Computer-Aided Design Methods >Fuzzy-small degrees of freedom representation of linear and angular variations in mechanical assemblies for tolerance analysis and allocation
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Fuzzy-small degrees of freedom representation of linear and angular variations in mechanical assemblies for tolerance analysis and allocation

机译:机械组件中线性和角度变化的模糊小自由度表示,用于公差分析和分配

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摘要

Tolerances naturally generate an uncertain environment for design and manufacturing. In this paper, a novel fuzzy based tolerance representation approach for modeling the variations of geometric features due to dimensional tolerances is presented. The two concepts of fuzzy theory and small degrees of freedom are combined to introduce the fuzzy-small degrees of freedom model (F-SDOF). This model is suitable for tolerance analysis of mechanical assemblies with linear and angular tolerances. Based on the fuzzy concept, a new index (called the assemblability index) is introduced which signifies the fitting quality of parts in the assembly. Graphical and numerical representations of tolerance allocation by this method are presented. The goal of tolerance allocation is to adjust the tolerances assigned at the design stage so as to meet a functional requirement at the assembly stage. The presented method is compatible with the current dimensioning and tolerancing standards. The application of the proposed methodology is illustrated through presenting an example problem.
机译:公差自然会为设计和制造带来不确定的环境。在本文中,提出了一种新颖的基于模糊的公差表示方法,用于建模由于尺寸公差引起的几何特征的变化。结合模糊理论和小自由度两个概念,引入了模糊小自由度模型(F-SDOF)。该模型适用于具有线性和角度公差的机械组件的公差分析。在模糊概念的基础上,引入了一个新的指标(称为可装配性指标),该指标表示装配中零件的装配质量。给出了该方法公差分配的图形和数字表示。公差分配的目的是在设计阶段调整分配的公差,以满足组装阶段的功能要求。提出的方法与当前的尺寸和公差标准兼容。通过提出示例问题来说明所提出的方法的应用。

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