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Mechanical properties of high purity polycrystalline cBN synthesized by direct conversion sintering method

机译:直接转化烧结法合成高纯多晶立方氮化硼的力学性能

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Mechanical properties of high purity polycrystalline cBN sintered bodies synthesized by the direct conversion method under high pressure and high temperature have been investigated by hardness and transverse rupture strength (TRS) measurement in the temperature range of 20-1200℃. It was confirmed that the hardness and TRS of the polycrystalline cBN depends strongly on the cBN grain size and the amount of residual (compressed) hBN in the sintered body. The fine-grained (<0.5 μm) and high purity (cBN>99.9%) polycrystalline sintered body synthesized at 7.7 GPa, 2200-2400℃ has highest hardness and TRS at any temperature. The TRS of the sintered body shows a positive temperature dependence up to 1200℃. The high hardness and high TRS at high temperature of the fine-grained high purity polycrystalline cBN suggest that the sintered body has high potential in cutting tool uses.
机译:通过在20-1200℃温度范围内的硬度和横向断裂强度(TRS)测量,研究了通过直接转化法在高压和高温下合成的高纯度多晶cBN烧结体的力学性能。可以确认,多晶cBN的硬度和TRS在很大程度上取决于cBN的晶粒尺寸和烧结体中残留(压缩的)hBN的量。在7.7 GPa,2200-2400℃下合成的细晶(<0.5μm)和高纯度(cBN> 99.9%)多晶烧结体在任何温度下均具有最高的硬度和TRS。烧结体的TRS在高达1200℃时表现出正温度依赖性。细粒高纯度多晶cBN的高温高硬度和高TRS表明该烧结体在切削工具中具有很高的潜力。

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