Surface-modified diamond embedded in nickel matrix composite for intrinsic polishing application

C. Shih, Wei-Chih Lin, Chao-Sung Lin, Yung-Ning Pan
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Abstract

An approach for fabricating a diamond conditioner by using a micro patterning and nickel electroforming method is demonstrated to improve the material removal rate (MRR) and the diamond worn ratio. By compared with the currently commercial conditioner, our developed diamond conditioner performs approximate 35% of the MRR and 18% of diamond worn ratio. The contact surface between the diamond and the counterpart is increased by the well-controlled of the grit protrusion which is within the range of 1.36 micrometer. This protrusion control not only results in the MRR and frictional coefficient increase, but also the load force reduction on each diamond grit during a wearing test. Furthermore, a chemical treatment is utilized to functionalize the surface of the diamond grits for the adhesion enhancement which can eliminate the matrix defects at the interface between the grits and nickel matrix.
表面改性金刚石嵌入镍基复合材料内禀抛光应用
提出了一种利用微图案化和镍电铸法制备金刚石调理剂的方法,以提高材料去除率和金刚石磨损率。与目前的商用护发素相比,我们开发的钻石护发素的MRR约为35%,钻石磨损率约为18%。磨粒突出度控制在1.36微米范围内,增加了金刚石与对应体的接触面。这种凸出控制不仅可以提高MRR和摩擦系数,还可以降低磨损试验中每个金刚石砂粒的载荷力。此外,利用化学处理对金刚石磨粒表面进行功能化以增强附着力,从而消除磨粒与镍基体之间界面处的基体缺陷。
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