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Workpiece surface flatness improvement by tool length compensation in micromilling

机译:通过微铣削中的刀具长度补偿提高工件表面平整度

摘要

Micromilling quality improvement requires an accurate management of all the involved resources (machine tool, tool, fixture, workpiece). Specific attention has to be paid, comparing to macro operations, also to machining strategies and tool and workpiece measuring strategies. The extreme workpiece accuracy requires to reinterpret some procedures, already applied in the macro world, with the purpose to minimize errors. It is the case of the tool length compensation, which plays a strong role on the micromilling overall performance. In order to demonstrate the importance of factors affecting tool length, as machine spindle thermal transients and tool wear assessment, the present paper takes the workpiece flatness deviation as a case study and presents a manufacturing and measuring strategy able to meet a challenging flatness constraint.
机译:微铣削质量的提高要求对所有相关资源(机床,工具,夹具,工件)进行精确管理。与宏操作相比,还必须特别注意加工策略以及刀具和工件测量策略。极高的工件精度要求重新解释一些宏程序中已经应用的程序,以最大程度地减少错误。刀具长度补偿就是这种情况,它对微铣削的整体性能起着重要作用。为了证明影响刀具长度的因素的重要性,例如机床主轴热瞬变和刀具磨损评估,本文以工件平面度偏差为例进行研究,提出了能够满足严峻平面度约束的制造和测量策略。

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