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Lapping of Electrical Discharge Machining Processed Tool Steel Surface Using Elliptical Tool Motion

机译:椭圆刀具运动精加工放电加工工具钢表面的研磨

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摘要

A prototype lapping machine, which finishes surfaces by applying elliptical motions to a lapping tool in the presence of diamond compound, is developed. This paper describes the structure of the lapping machine, the 2-dimensional tool motions measured on the machine, the behavior of the diamond compounds between the tool and lapping surfaces, and the fundamental lapping performance. The tool motions are measured using a laser Doppler vibrometer and the proportional constants that are needed to obtain an objective tool motion are determined with the regression technique. The motion behavior of the diamond abrasive grains for each tool motion is directly observed with a microscope through a glass plate. Lapping experiments are conducted under the conditions with and without the work-feed. After lapping, the workpiece surface is measured using a surface profilometer for surface roughness and profile information. As a result, a surface roughness of less than 0.1 μmRa is achieved using a 3 μm compound and near-circular tool motion of 12.5 μm radius.
机译:开发了一种原型研磨机,该研磨机通过在金刚石化合物存在下对研磨工具施加椭圆运动来精加工表面。本文介绍了研磨机的结构,在机器上测量的二维刀具运动,刀具与研磨表面之间的金刚石化合物的行为以及基本的研磨性能。使用激光多普勒振动计测量刀具运动,并使用回归技术确定获得客观刀具运动所需的比例常数。用显微镜通过玻璃板直接观察每次工具运动的金刚石磨粒的运动行为。研磨实验在有或没有工作进料的条件下进行。研磨后,使用表面轮廓仪测量工件表面的表面粗糙度和轮廓信息。结果,使用3μm的化合物和半径为12.5μm的近圆形刀具运动,可实现小于0.1μmRa的表面粗糙度。

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