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Tolerance Modeling Using the Feature Based Product Model for Prediction of Used Parts Deterioration

机译:使用基于特征的产品模型进行公差建模,用于预测二手零件劣化

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The objective of this paper is the prediction for the deteriorated status of mechanical parts based on the feature-oriented product model for supporting the parts reuse phase. As the first step, the product model with "Geometrical Quality Feature" is proposed for representing the deteriorated status. The geometrical quality feature consists of "form tolerance" and "geometrical-relation constraint". Based on the TTRS (Technologically and Topologically Related Surface) method, the form tolerance is described for representing deteriorated deformation of each geometric element. A geometrical-relation constraint is defined corresponding to the type of surfaces and its geometrical relation. The relationship between the form tolerances and the geometrical-relation constraint is also described in each movable element for interpreting the change of form tolerance into that of the geometrical-relation constraint. In the prediction process of parts deterioration using the geometrical quality feature, the effect of the deteriorated deformation on the functional behaviour is calculated using the cause list and behaviour simulation. This calculated status is assigned to each geometric element through form tolerance and it refers to the prediction of the deteriorated status comparing to the usage history. Through this process, the reuse of mechanical parts as a material for the machining process can be supported.
机译:本文的目的是基于面向体积的产品模型对机械部件劣化状态的预测,用于支撑零件重用阶段。作为第一步,提出了具有“几何质量特征”的产品模型,用于表示劣化状态。几何质量特征包括“形态容差”和“几何关系约束”。基于TTR(技术和拓扑相关表面)方法,描述了表格公差,用于表示每个几何元件的劣化变形。几何关系约束定义对应于表面的类型及其几何关系。在每个可移动元件中还描述了形式公差与几何关系约束之间的关系,用于将形态容差的变化解释为几何关系约束的变化。在使用几何质量特征的部件劣化的预测过程中,使用原因列表和行为仿真计算劣化变形对功能行为的影响。通过形式容差分配该计算的状态,并且它是指与使用历史相比的劣化状态的预测。通过该过程,可以支撑作为用于加工过程的材料的机械部件的再利用。

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