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Hardness of Polycrystalline Wurtzite Boron Nitride (wBN) Compacts

机译:多晶纤锌矿氮化硼(wBN)压块的硬度

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摘要

Wurtzite boron nitride (wBN), due to its superior properties and many potential practical and scientific applications, such as ideal machining/cutting/milling ferrous and carbide materials, especially as an ideal dielectric substrate material for optical, electronic, and 2-D graphene-based devices, has recently attracted much attention from both academic and industrial fields. Despite decades of research, there is an ongoing debate about if the single-phase wBN is harder than diamond because of the difficulty to make pure wBN material. Here we report the successful synthesis of pure single-phase polycrystalline wurtzite-type boron nitride (wBN) bulk material by using wBN powder as a starting material with a well-controlled process under ultra-high pressure and high temperature. The cubic boron nitride (cBN) was also successfully prepared for the first time from wBN starting material for comparison and verification. The X-ray diffraction (XRD) and TEM clearly confirmed that a pure single-phase wBN compact was produced. The microstructure and mechanical properties including Vickers hardness, fracture toughness, and thermal stability for the pure single-phase wBN was first evaluated.
机译:纤锌矿氮化硼(wBN),由于其优越的性能以及许多潜在的实际和科学应用,例如理想的机加工/切割/铣削亚铁和碳化物材料,尤其是作为光学,电子和二维石墨烯的理想电介质基材基于设备的设备,最近引起了学术界和工业领域的广泛关注。尽管进行了数十年的研究,但由于难以制造纯wBN材料,因此单相wBN是否比金刚石更难进行辩论。在这里,我们报道了以wBN粉末为原料,在超高压和高温下对过程进行良好控制的成功合成纯单相多晶纤锌矿型氮化硼(wBN)块状材料的方法。还首次成功地从wBN起始原料中制备了立方氮化硼(cBN),用于比较和验证。 X射线衍射(XRD)和TEM清楚地证实,可以制得纯的单相wBN压块。首先评估了纯单相wBN的微观结构和力学性能,包括维氏硬度,断裂韧性和热稳定性。

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