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Fundamental Study on Diamond Spherical Shell Film for Polishing of Concave Spherical Surface

机译:金刚石球壳膜抛光凹球面的基础研究

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摘要

In this paper, a new polishing technique was proposed to polish concave spherical surface by diamond spherical shell deposited by DC-Plasma Jet CVD(chemical vapor deposition), and preparation was studied from both experiment and theory. The deposited films were investigated by some techniques including: scanning electron microscopy (SEM), atom force microscopy (AFM), Raman spectroscopy, and roughness-profile-meter, which were used to analyze surface phase, microstructure, internal quality and surface roughness. The results show that the deposited diamond spherical shell film has some remarkable properties, such as high surface density, high hardness. Compared to traditional polishing techniques, it will have some potential advantages as convenient, flexible, efficient and precious. To adjust some important parameters as methane concentration, depositing time, and it can deposit the different size grain diamond spherical shell films, which are used to polish different precision degree concave spherical surfaces. Meantime, to change curvature of diamond spherical shell, it can adapt to polish various curvature radius concave spherical surfaces.
机译:本文提出了一种新的抛光技术,通过DC-Plasma Jet CVD(化学气相沉积)沉积的金刚石球形壳抛光凹球形表面,并从实验和理论两方面进行了研究。通过一些技术研究了沉积的薄膜,这些技术包括:扫描电子显微镜(SEM),原子力显微镜(AFM),拉曼光谱和粗糙度轮廓仪,用于分析表面相,微观结构,内部质量和表面粗糙度。结果表明,所沉积的金刚石球形壳膜具有高表面密度,高硬度等显着性能。与传统抛光技术相比,它具有一些便利,灵活,高效和珍贵的潜在优势。通过调节甲烷浓度,沉积时间等重要参数,可以沉积出不同尺寸的颗粒金刚石球形壳膜,用于抛光不同精度等级的凹球形表面。同时,改变金刚石球壳的曲率,可以适应抛光各种曲率半径的凹球面。

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