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首页> 外文期刊>International Journal of Computer Integrated Manufacturing >Closed door machining error compensation of complex surfaces using the cutting compliance coefficient and on-machine measurement for a milling process
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Closed door machining error compensation of complex surfaces using the cutting compliance coefficient and on-machine measurement for a milling process

机译:使用铣削顺应系数和在机测量来对复杂表面进行闭门加工误差补偿

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摘要

Closed door machining is a strategy for producing a part within tolerance using on-machine measurement and automatic process adjustment as opposed to manual gauging interventions. This paper presents an integrated methodology for compensating errors detected using on-machine probing. In a multi-cut process, intermittent probing which is achieved through replacing the cutting tool with a touch probe, after each cut, can detect machining errors caused by deflection and the tool offset error. A cutting compliance coefficient model is used to estimate corrections to the tool path at the finishing cut based on a finite number of measured errors at discrete locations for previous cuts. The model also anticipates compliance changes and the effect of the compensated depth of cut. The complex surface to be machined is represented by a B-spline model. The compensated tool path is obtained from B-spline deformation techniques applied to the initial tool path according to the discrete corrections. Milling tests are carried out with and without compensation demonstrating a reduction of machining error from +140 to ±20 μm.
机译:闭门加工是一种通过在机测量和自动过程调整来生产公差在允许范围内的零件的策略,与手动测量干预相反。本文提出了一种用于补偿使用机器探测方法检测到的错误的集成方法。在多切削过程中,通过在每次切削后用测头替换切削刀具而实现的间歇探测可以检测到因偏斜和刀具偏置误差引起的加工误差。切削顺应系数模型用于基于先前切削在离散位置的有限数量的测量误差来估算精加工切削时对刀具路径的校正。该模型还可以预测柔度的变化以及补偿后的切削深度的影响。用B样条曲线模型表示要加工的复杂表面。补偿后的刀具路径是根据离散校正从应用于初始刀具路径的B样条变形技术获得的。在有补偿和无补偿的情况下进行铣削测试,表明加工误差从+140降低到±20μm。

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