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ELID Assisted Precision Conditioning of Coarse-Grained Diamond Grinding Wheel

机译:粗粒粒子砂轮的ELID辅助精密调节

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In order to realize ductile machining of optical glasses using mono-layer nickel electroplated coarse-grained diamond grinding wheel, a novel conditioning technique features using a copper bonded diamond grinding wheels of 15μm grain size dressed by ELID (electrolytic in-process dressing) to condition the 46μm grain sized diamond wheel has been developed. During the conditioning process, a force transducer was used to monitor the conditioning force, a coaxial optical distance measurement system was used to in-situ monitor the modified wheel surface status. White-light interferometry (WLI), scanning electron microscopy (SEM) and atomic force microscopy (AFM) were used to characterize the conditioned wheel surface status as well as the ground optical glass surface topography correspondingly. The experimental result indicates that a minimized wheel radial run-out error of less than 2μm as well as the top-flattened diamond grains of constant wheel peripheral envelop profile were generated on a 5-axis ultra-precision machine tool. The grinding experiment proved that the well conditioned 46μm coarse-grained diamond wheel can be used in realizing the ductile grinding of optical glass BK7, which indicates that the newly developed conditioning technique is feasible and applicable to introduce the coarse-grained diamond wheels into precision machining of brittle and hard-to-machine materials.
机译:为了实现使用单层镍电镀粗粒金刚石砂轮的光学玻璃的延展加工,一种新的调节技术特征,使用由ELID(电解于工艺敷料)的粒度为15μm粒度的铜粘合金刚石研磨轮46μm粒尺寸的钻石轮已经开发出来。在调节过程中,使用力换能器监测调节力,使用同轴光学距离测量系统对原位监测改进的车轮表面状态。白光干涉测量(WLI),扫描电子显微镜(SEM)和原子力显微镜(AFM)用于表征调节轮表面状态以及相应的地面光学玻璃表面形貌。实验结果表明,在5轴超精密机床上产生最小化的车轮径向射流误差小于2μm的小于2μm,以及恒定轮外围包围曲线的顶部扁平金刚石颗粒。研磨实验证明,良好的46μm粗粒颗粒金刚石轮廓可用于实现光学玻璃BK7的延展岩磨削,这表明新开发的调节技术是可行的并且适用于将粗粒金刚石件引入精密加工脆性和难以到机器的材料。

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