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Processing and properties of monolithic TiB_2 based materials

机译:整体式TiB_2基材料的加工和性能

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Titanium diboride (TiB_2) based materials have received wide attention because of their high hardness and elastic modulus, good abrasion resistance, and superior thermal and electrical conductivity. Potential applications include high temperature structural materials, cutting tools, armour, electrodes in metal smelting and wear parts. Despite its useful properties, the application of monolithic TiB_2 is limited by poor sinterability, exaggerated grain growth at high temperature and poor oxidation resistance above 1000 deg C, Pure TiB_2 can be densified only at high temperatures (~2000 deg C), with an applied pressure generally being necessary during sintering. However, these high sintering temperatures cause abnormal grain growth and microcracks, which are detrimental to the mechanical properties. Various sinter additives are commonly added to obtain dense TiB_2 with optimised mechanical properties at lower sintering temperature. The present review surveys the current state of knowledge on development of bulk TiB_2 based materials, with particular emphasis on consolidation microstructure property relationships. Three major issues are addressed: the preparation of bulk titanium boride with metallic and non-metallic sinter additives (up to 20 wt- percent), tribological properties and thermal stability of the borides. In conclusion, a perspective for future development of boride materials is provided.
机译:基于二硼化钛(TiB_2)的材料因其高硬度和弹性模量,良好的耐磨性以及优异的导热性和导电性而受到广泛关注。潜在的应用包括高温结构材料,切削工具,铠装,金属熔炼中的电极和易损件。尽管具有有用的性能,但整体式TiB_2的应用受限于可烧结性差,高温下晶粒过大和1000摄氏度以上的抗氧化性差,纯TiB_2仅在高温下(〜2000摄氏度)才能致密化。烧结过程中通常需要施加压力。然而,这些高的烧结温度导致异常的晶粒生长和微裂纹,这不利于机械性能。通常添加各种烧结添加剂以在较低的烧结温度下获得具有优化机械性能的致密TiB_2。本综述调查了有关基于块状TiB_2的材料开发的当前知识状态,尤其着重于固结微结构特性关系。解决了三个主要问题:使用金属和非金属烧结添加剂(最高20 wt%)制备块状硼化钛,摩擦学性能和硼化物的热稳定性。总之,提供了硼化物材料未来发展的前景。

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