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A long-term control scheme of cutting forces to regulate tool life in end milling processes

机译:切削力的长期控制方案,可调节立铣刀过程中的刀具寿命

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摘要

Numerous researches on cutting force control in end milling processes have been reported in the literature. There have been, however, very few practical applications actually employed in commercial products. The paper presents a simple, practically feasible and effective scheme to regulate the tool life through a long-term control of cutting force. Cutting force changes quickly occurring due to tool path geometry are suppressed using model-based feedrate scheduling. Cutting force is monitored only at tool path check points, set typically at intervals of several dozen meters. Since it does not require continuous full-time monitoring of cutting forces, a “cheaper” estimation scheme of cutting forces can be potentially employed. Feedback control focuses only on a long-term point-to-point regulation of cutting force, targeting tool life providing cutting for the given desired distance. The effectiveness of the present approach is experimentally investigated by an application example to contour-parallel cutting of hardened steel.
机译:文献中已经报道了许多有关端铣削过程中切削力控制的研究。然而,在商业产品中实际使用的实际应用很少。本文提出了一种通过长期控制切削力来调节刀具寿命的简单,切实可行和有效的方案。使用基于模型的进给率调度可以抑制由于刀具路径几何形状而导致的切削力快速变化。切削力仅在刀具路径检查点(通常以几十米的间隔设置)上进行监控。由于不需要连续的全天候监控切削力,因此可以潜在地采用切削力的“便宜”估计方案。反馈控制仅专注于切削力的长期点对点调节,目标是使刀具寿命达到给定所需距离的切削。通过应用实例对硬化钢进行轮廓平行切割,对本方法的有效性进行了实验研究。

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