首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part B. Journal of engineering manufacture >Study on functional specification scheme on interface based on positioning features
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Study on functional specification scheme on interface based on positioning features

机译:基于定位特征的接口功能规范方案研究

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This article proposes a scheme for functional specification in accordance with the new generation of geometrical product specification. The scheme is to decompose a geometrical functional requirement on a complex mechanism into geometric specifications defined on key parts. The assembly is analyzed by graph theory. The general geometrical functional requirement is analyzed and decomposed if necessary, with geometrical tolerances specified on ending parts. Then geometric variation model is built according to the invariant degree of freedom of both datum reference system and tolerance zone, which is subsequently used to validate the sufficiency of the datum reference frame on positioning features, thereby inferring joints that perform key roles in affecting function. After a series of topological rules formulated and validation algorithm applied, datum reference system is validated and detailed specifications are generated on joint surfaces. Those specifications on underlying parts or subassemblies are then defined as new geometrical functional requirements and should be further developed. Therefore, the designer can carry out an effective recursive approach capable of realizing each geometric specification on key features while ensuring functional tolerancing of the entire assembly. A case study is given to validate the proposed method.
机译:本文提出了一种根据新一代几何产品规范进行功能规范的方案。该方案是将复杂机构上的几何功能需求分解为关键零件上定义的几何规格。通过图论分析装配。分析通用几何功能需求,并在必要时进行分解,并在端部件上指定几何公差。然后根据基准参考系统和公差带的不变自由度建立几何变化模型,随后将其用于验证基准参考框架在定位特征上的充分性,从而推断出在影响功能中起关键作用的关节。在制定了一系列拓扑规则并应用了验证算法之后,基准参考系统得到了验证,并在接合面上生成了详细的规格。然后,将有关底层零件或子组件的那些规范定义为新的几何功能要求,并应进一步进行开发。因此,设计人员可以执行一种有效的递归方法,该方法能够实现关键特征的每个几何规格,同时确保整个组件的功能公差。案例研究验证了该方法的有效性。

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