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Ultra-precision cutting of titanium alloy with the formed coated-cemented-carbide cutting tool

机译:用成型涂层碳化物切削刀具的钛合金超精密切割

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The difficult-to-cut metals are expected to be increasingly used as the high quality components in a wide field of industry because of their excellent mechanical and chemical properties. However, the ultra-precision cutting of difficult-to-cut metals is quite difficult because the wear rate of diamond tool is extremely high. There are several reports on ultra-precision cutting of steel by using ultra-precision machine with special expensive vibrator and high quality diamond tool. In our recent researches, it has been found that the coated-cemented-carbide tool which is put on the market as general cutting tool for hard materials is available for the ultra-precision cutting of the difficult-to-cut metals. The surface roughness of face-turned α-β titanium alloy and 5U5316 surfaces attains below 100nm(P-V) without complicated and expensive devices. It is purpose of this paper to point out that the finished surface of f titanium alloy is improved by forming sharply a cutting edge of cemented-carbide tool by polishing technique.
机译:由于其出色的机械和化学性质,预计难以削减的金属将越来越多地用作广域领域的高质量成分。然而,难以切割的金属的超精确切割是非常困难的,因为金刚石工具的磨损率极高。使用具有特殊昂贵的振动器和优质金刚石工具的超精密机器,有几个关于钢超精密切割的报道。在我们最近的研究中,已经发现,作为硬质材料的一般切削工具,将市场上的涂层硬质合金工具可用于难以切割金属的超精确切割。面向α-β钛合金的表面粗糙度和5u5316表面的表面低于100nm(p-V),无复杂且昂贵的装置。本文的目的是指出,通过通过抛光技术形成碳化碳化物工具的急剧性边缘,改善了F钛合金的成品表面。

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