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Ultra-precision grinding of optical glasses using mono-layer nickel electroplated coarse-grained diamond wheels. Part 1: ELID assisted precision conditioning of grinding wheels

机译:使用单层镀镍粗粒金刚石砂轮对光学玻璃进行超精密研磨。第1部分:ELID辅助的砂轮精密修整

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摘要

In order to realize ultra-precision grinding of optical glasses with mono-layer nickel electroplated coarse-grained diamond grinding wheels, a novel conditioning technique was developed using copper bonded diamond grinding wheels with grain sizes of 15 μm (D15) and 91 μm (D91), respectively, as conditioners for truing of diamond wheels with grain sizes of 46 μm (D46), 91 μm (D91) and 151 μm (D151), respectively. During the conditioning process, the conditioners were continuously dressed by means of electrolytic in-process dressing (ELID). A force transducer was used to monitor the conditioning force while a coaxial optical distance measurement system was used to monitor the wheel run-out. In addition, a white-light interferometer (WLI) and a scanning electron microscope (SEM) were used to characterize the successively modified diamond grain morphologies of the conditioned wheels both directly and by a replication technique. The experimental results show that with optimized conditioning parameters, the developed conditioning technique can be applied for truing of coarse-grained diamond wheels within the abrasive layer achieving a constant wheel peripheral envelop surface exhibiting flattened diamond grains with a run-out <2.5 μm, which is a prerequisite for introducing coarse-grained diamond wheels into ultra-precision machining of brittle and hard-to-machine materials.
机译:为了使用单层镀镍粗粒金刚石砂轮实现光学玻璃的超精密研磨,开发了一种新型的修整技术,该技术使用粒径为15μm(D15)和91μm(D91)的铜结合金刚石砂轮),分别作为晶粒大小为46μm(D46),91μm(D91)和151μm(D151)的金刚石砂轮修整的调节器。在调理过程中,通过电解过程修整(ELID)连续修整护发素。力传感器用于监测调节力,而同轴光学距离测量系统用于监测车轮跳动。此外,白光干涉仪(WLI)和扫描电子显微镜(SEM)用于直接和通过复制技术表征修整后的砂轮的连续修饰的金刚石晶粒形态。实验结果表明,通过优化的修整参数,可以将开发的修整技术应用于磨料层内的粗粒金刚石砂轮的整形,从而获得恒定的砂轮外围包络表面,并显示出扁平金刚石晶粒,跳动<2.5μm,从而这是将粗晶粒金刚石砂轮引入脆性和难加工材料的超精密加工的前提条件。

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