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Design and testing of a long-range, precision fast tool servo system for diamond turning

机译:用于金刚石车削的远程精密快速工具伺服系统的设计和测试

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摘要

A long-range, precision fast tool servo (FTS) system was developed that is capable of accurately translating the cutting tool on a diamond turning machine (DTM) with maximum accelerations of 260 m s~(-2) and bandwidths of up to 140 Hz. The maximum displacement range of the cutting tool is 2 mm. The FTS utilizes a flexure mechanism driven by a voice coil actuator, a custom linear current amplifier and a laser interferometer feedback system. This paper describes the design of the electromechanical system, controller configuration and cutting tests to evaluate the system. Initially, low disturbance rejection and poor command following degraded the surface finish of machined test parts. Several techniques to add damping to the dynamic system were investigated to improve the generated surface finishes. Electromotive damping was applied inside the voice coil actuator, and two different viscoelastic damping materials were applied to the flexure mechanism. A control strategy consisting of linear and non-linear feedforward controllers and a proportional, integral and derivative (PID) feedback controller was implemented to accommodate the changed system dynamics. The workpieces were analyzed using form and surface inspection instruments to evaluate the overall system performance. A cylindrical part with five lobes cut across the face had a surface finish value between 20 and 30 nm R_(a).
机译:开发了一种远程高精度快速刀具伺服(FTS)系统,该系统能够以最大260 ms〜(-2)的最大加速度和高达140 Hz的带宽准确地在金刚石车床(DTM)上平移切削刀具。切削工具的最大位移范围为2毫米。 FTS利用了由音圈致动器,定制线性电流放大器和激光干涉仪反馈系统驱动的挠曲机构。本文介绍了机电系统的设计,控制器的配置以及用于评估系统的切削测试。最初,低干扰抑制和较差的指令会降低机加工测试零件的表面光洁度。研究了几种为动态系统增加阻尼的技术,以改善产生的表面光洁度。音圈致动器内部采用了电动阻尼,挠曲机构采用了两种不同的粘弹性阻尼材料。实施了由线性和非线性前馈控制器以及比例,积分和微分(PID)反馈控制器组成的控制策略,以适应变化的系统动力学。使用形状和表面检查仪器分析工件,以评估整体系统性能。整个表面上切有五个凸角的圆柱部分的表面光洁度值在20到30 nm R_(a)之间。

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