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Ultrahard and stable nanostructured cubic boron nitride from hexagonal boron nitride

机译:来自六边形氮化硼的超空地和稳定的纳米结构立方氮化物

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摘要

Cubic boron nitride (cBN), a typical superhard material, has garnered significant interest for both fundamental scientific research and technical applications. Here, nanostructured cBN with high-density nanotwins and stacking faults was synthesized by rapid quenching using hexagonal boron nitride (hBN) as the starting material at a moderate temperature (2200 K) and low pressure (13 GPa). This synthetic nanostructured cBN exhibits high Vickers hardness (78 GPa), high fracture toughness (11.8 MPam(1/2)), and extremely high oxidization temperature (1565 K). We propose that the refined grain structure and excellent mechanical properties of the cBN synthesized in this study is attributed mainly to dislocation slips and (111) mechanical nanotwins that dominate this phase transformation.
机译:立方体氮化物(CBN),典型的超硬材料,对基本科学研究和技术应用来说,已经获得了重大兴趣。 这里,通过使用六边形氮化硼(HBN)作为起始材料在中等温度(2200k)和低压(13GPa)中,通过快速淬火而合成具有高密度纳米纹和堆叠故障的纳米结构CBN。 该合成纳米结构CBN表现出高维氏硬度(78GPa),高断裂韧性(11.8mPam(1/2))和极高的氧化温度(1565 k)。 我们提出,在本研究中合成的CBN的精细晶粒结构和优异的机械性能主要归因于位错滑动和(111)机械纳米管道,其占主导地位该相变化。

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