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Reactive Spark Plasma Sintering and Mechanical Properties of Zirconium Diboride–Titanium Diboride Ultrahigh Temperature Ceramic Solid Solutions

机译:二硼化锆-二硼化钛超高温陶瓷固溶体的反应放电等离子烧结和力学性能

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Ultrahigh temperature ceramics (UHTCs) such as diborides of zirconium, hafnium tantalum and their composites are considered to be the candidate materials for thermal protection systems of hypersonic vehicles due to their exceptional combination of physical, chemical and mechanical properties. A composite of ZrB 2 -TiB 2 is expected to have better properties. In this study, an attempt has been made to fabricate ZrB 2 -TiB 2 ceramics using mechanically activated elemental powders followed by reactive spark plasma sintering (RSPS) at 1400 °C. Microstructure and phase analysis was carried out using X-ray diffractometer (XRD) and electron microscopy to understand microstructure evolution. Fracture toughness and hardness were evaluated using indentation methods. Nanoindentation was used to measure elastic modulus. Compressive strength of the composites has been reported.
机译:锆,di钽的二硼化物等超高温陶瓷(UHTC)及其复合材料由于其物理,化学和机械性能的出色结合而被认为是高超声速车辆热防护系统的候选材料。 ZrB 2 -TiB 2的复合物有望具有更好的性能。在这项研究中,已经尝试使用机械活化的元素粉末然后在1400°C下进行反应性火花等离子体烧结(RSPS)来制造ZrB 2 -TiB 2陶瓷。使用X射线衍射仪(XRD)和电子显微镜进行微观结构和相分析,以了解微观结构的演变。使用压痕方法评估断裂韧性和硬度。纳米压痕用于测量弹性模量。已经报道了复合材料的抗压强度。

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