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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Error sensitivity analysis and precision distribution for multi-operation machining processes based on error propagation model
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Error sensitivity analysis and precision distribution for multi-operation machining processes based on error propagation model

机译:基于误差传播模型的多工序加工误差敏感性分析与精度分配

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摘要

The error control and distribution of multi-operational machining processes is an active and important research topic in manufacturing. Most of the recent studies focus on statistical methods and the robustness of the evaluating process. However, these studies mainly serve to provide a change prediction tool rather than a method to identify and control root causes of machining errors. In this paper, in order to effectively control and distribute products of high-quality precision, a method of integrating a stream of variations (SoV) and multi-objective optimization is proposed. First, a machining process decomposition method is introduced to identify the sources of error. The multi-operation machining process is divided into three levels: the operation level, the station level, and the key characteristics level. Second, the sensitivities of the machining operation are evaluated level by level based on the SoV model; results of this evaluation will be used to determine the maximum error sources affecting the quality of products. Third, a distribution technique for each quality precision is achieved by solving a multi-objective optimization problem to minimize the cost and error associated with the sensitivities. Finally, a machining instance containing four operations is presented to demonstrate the effectiveness of the methodology.
机译:多工序加工过程的误差控制和分布是制造中一个活跃而重要的研究课题。最近的大多数研究集中在统计方法和评估过程的稳健性上。但是,这些研究主要是提供变化预测工具,而不是识别和控制加工误差的根本原因的方法。为了有效地控制和分配高质量精度的产品,本文提出了一种集成变量流(SoV)和多目标优化的方法。首先,引入了一种加工过程分解方法来识别误差源。多工序加工过程分为三个等级:操作等级,工位等级和关键特性等级。其次,基于SoV模型逐级评估加工操作的敏感性。评估结果将用于确定影响产品质量的最大误差源。第三,通过解决多目标优化问题以最小化与灵敏度相关的成本和误差,实现了每种质量精度的分配技术。最后,给出了包含四个操作的加工实例,以证明该方法的有效性。

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