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首页> 外文期刊>Journal of manufacturing science and engineering: Transactions of the ASME >A Quality Prediction Framework for Multistage Machining Processes Driven by an Engineering Model and Variation Propagation Model
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A Quality Prediction Framework for Multistage Machining Processes Driven by an Engineering Model and Variation Propagation Model

机译:工程模型和变异传播模型驱动的多级加工过程质量预测框架

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摘要

This paper proposes a comprehensive quality prediction framework for multistage machining processes, connecting engineering design with the activities of quality modeling, variation propagation modeling and calculation, dimensional variation evaluation, dimensional variation analysis, and quality feedback. Presented is an integrated information model utilizing a hybrid (feature/point-based) dimensional accuracy and variation quality modeling approach that incorporates Monte Carlo simulation, variation propagation, and regression modeling algorithms. Two important variations (kinematic and static) for the workpiece, machine tool, fixture, and machining processes are considered. The objective of the framework is to support the development of a quality prediction and analysis software tool that is efficient in predicting part dimensional quality in a multistage machining system (serial, parallel, or hybrid) from station level to system level.
机译:本文提出了一个用于多阶段加工过程的综合质量预测框架,将工程设计与质量建模,变量传播建模和计算,尺寸变化评估,尺寸变化分析和质量反馈等活动联系起来。提出了一种综合信息模型,该模型利用混合(基于特征/点的)尺寸精度和变化质量建模方法,该方法结合了蒙特卡洛模拟,变化传播和回归建模算法。考虑了工件,机床,夹具和加工过程的两个重要变化(运动学和静态)。该框架的目标是支持质量预测和分析软件工具的开发,该工具可以有效地预测从工作站级别到系统级别的多级加工系统(串行,并行或混合)中的零件尺寸质量。

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