Images of the Machined Surface in Evaluation of the Efficiency of a Micro-Smoothing Process

A. Zawada-Tomkiewicz, R. Ściegienka, U. Župerl, K. Stępień
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引用次数: 8

Abstract

The micro-smoothing in this paper concerns belt-grinding operations in two varieties that differ in the use of axial oscillations. The method relies on the continuous slow introduction of the finishing film in the working zone. The film is applied to the rotating workpiece with a defined pressure and axial oscillation. The quality of the machined surface is evaluated as a function of the finishing time. A model of the belt-grinding efficiency was developed taking into account the machined surface quality. In a monitoring system, an image of the machined surface was applied, decomposed into ten sub-images, which in turn were described by the energy parameter. The decrease of image energy was modelled, and the efficiency of the micro-smoothing process was evaluated, which in turn enabled the estimation of the finishing time. The results confirmed the correctness of the proposed methodology in the analysis of the finishing time of the belt-grinding operations.
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微平滑加工效率评价中的加工表面图像
本文中的微平滑涉及两种不同轴向振荡使用的带式磨削操作。该方法依赖于在工作区内连续缓慢地引入整理膜。薄膜以一定的压力和轴向振荡作用于旋转工件上。加工表面的质量被评价为精加工时间的函数。建立了考虑加工表面质量的皮带磨削效率模型。在监测系统中,将加工表面图像分解为10个子图像,然后用能量参数来描述这些子图像。对图像能量的下降进行了建模,并对微平滑过程的效率进行了评估,从而估计了完成时间。结果证实了该方法在砂带磨削加工时间分析中的正确性。
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