首页> 外文会议>Asia Pacific Conference on Optics Manufacture; 20070111-13; Hongkong(CN) >Diamond Machining of Steel Molds for Optical Applications
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Diamond Machining of Steel Molds for Optical Applications

机译:光学应用钢模具的金刚石加工

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As is well known, excessive chemical tool wear occurs when steel alloys are machined with monocrystalline diamond tools prevents many important applications. In order to reduce this catastrophic tool wear, certain process modifications have been proposed in the literature, e.g. cryogenic cutting and elliptical vibration cutting. Another approach for realizing precision machining of steel is coating the diamond with a TiN layer or using ceramic tools. However, only elliptical vibration cutting has proven to be ready for industrial use, but a large amount of auxiliary equipment is needed. The basic idea of the new approach is to avoid chemical reactions between the carbon of the diamond tool and the iron of the substrate by establishing a chemical bond between the iron and other chemical elements in the workpiece's subsurface layer. Using a custom-made thermo-chemical process for altering the chemical composition of the boundary layer of the workpiece the diamond tool wear can be reduced by more than two orders of magnitude. The surface roughness obtained in single point diamond turning of carbon steel was approximately 10 nm Ra and 6 nm Ra for raster milling processes.
机译:众所周知,当用单晶金刚石工具加工钢合金时,化学工具会过度磨损,从而阻碍了许多重要的应用。为了减少这种灾难性的工具磨损,在文献中已经提出了某些方法的改进,例如低温切削和椭圆振动切削。实现钢的精密加工的另一种方法是在金刚石上涂一层TiN层或使用陶瓷工具。但是,只有椭圆振动切割已被证明可用于工业用途,但是需要大量辅助设备。这种新方法的基本思想是,通过在铁与工件表面下层中的其他化学元素之间建立化学键,从而避免金刚石工具的碳与基材的铁之间的化学反应。使用定制的热化学工艺来改变工件边界层的化学成分,可以将金刚石工具的磨损减少两个数量级以上。对于光栅铣削工艺,碳钢单点金刚石车削获得的表面粗糙度约为10 nm Ra和6 nm Ra。

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