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首页> 外文期刊>Advances in Mechanical Engineering >A geometric error tracing method based on the Monte Carlo theory of the five-axis gantry machining center:
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A geometric error tracing method based on the Monte Carlo theory of the five-axis gantry machining center:

机译:基于蒙特卡罗理论的五轴龙门加工中心的几何误差跟踪方法:

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摘要

This article proposes a tracing method to identify key geometric errors for a computer numerical control machine tool by cutting an S-shaped test piece. Adjacent part relationships and machine tool errors transform relationships are described by topology of the machining center. Global sensitivity analysis method based on quasi-Monte Carlo was used to analyze machining errors. Using this method, key geometric errors with significant influence on machining errors were obtained. Compensation of the key errors was used to experimentally improve machining errors for the S-shaped test piece. This method fundamentally determines the inherent connection and influence between geometric errors and machining errors. Key geometric errors that have great influence on machining errors can be determined quickly with this method. Thus, the proposed tracing method could provide effective guidance for the design and use of machine tools.
机译:本文提出了一种追踪方法,用于通过切割S形试验片来识别计算机数控机床的关键几何误差。相邻的零件关系和机床误差变换关系由加工中心的拓扑描述。基于准蒙特卡罗的全局敏感性分析方法分析加工误差。使用该方法,获得了对加工误差影响显着影响的关键几何误差。使用关键误差的补偿用于通过实验改善S形试验片的加工误差。该方法从根本上决定了几何误差和加工错误之间的固有连接和影响。通过这种方法可以快速确定对加工误差产生很大影响的关键几何误差。因此,所提出的跟踪方法可以为机床的设计和使用提供有效的指导。

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