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首页> 外文期刊>International Journal of Production Research >Variation propagation modelling for multi-station machining processes with fixtures based on locating surfaces
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Variation propagation modelling for multi-station machining processes with fixtures based on locating surfaces

机译:基于定位曲面的带有夹具的多工位加工过程的变量传播建模

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摘要

Modelling the dimensional variation propagation in multi-station machining processes (MMPs) has been studied intensively in the past decade to understand and reduce the variation of product quality characteristics. Among others, the Stream-of-Variation (SoV) model has been successfully applied in a variety of applications, such as fault diagnosis, process planning and process-oriented tolerancing. However, the current SoV model is limited to the MMPs where only fixtures with punctual locators are applied. Other types of fixtures, such as those based on locating surfaces, have not been investigated. In this paper, the derivation of the SoV model is extended to model the effect of fixture- and datum-induced variations when fixtures with locating surfaces are applied. Due to the hyperstatic nature of these fixtures, different workholding configurations can be adopted. This will increase the dimension of the SoV model exponentially and thus may make the model-based part quality prediction extremely complex. This paper presents a method of reducing the complexity of the SoV model when fixtures based on locating surfaces are applied and evaluates the worst-case approach of the resulting part quality.
机译:在过去的十年中,对多工位加工过程(MMP)中尺寸变化传播的建模进行了深入研究,以了解和减少产品质量特征的变化。其中,变异流(SoV)模型已成功应用于各种应用程序中,例如故障诊断,过程计划和面向过程的公差。但是,当前的SoV模型仅限于仅使用带有准时定位器的灯具的MMP。尚未研究其他类型的固定装置,例如基于定位表面的固定装置。在本文中,扩展了SoV模型的推导,以建模当应用具有定位表面的夹具时,夹具和基准引起的变化的影响。由于这些固定装置的超静压特性,因此可以采用不同的夹具配置。这将使SoV模型的维数成倍增加,从而使基于模型的零件质量预测极其复杂。本文提出了一种减少基于定位表面的夹具时SoV模型的复杂性的方法,并评估了最终零件质量的最坏情况。

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