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Spark Plasma Sintering of ZrB2- and HfB2-Based Ultra High Temperature Ceramics Prepared by SHS

机译:SHS制备的基于ZrB2和HfB2的超高温陶瓷的火花等离子体烧结

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摘要

The combination of the SHS technique and the Spark Plasma Sintering (SPS) technology was adopted in this work for the fabrication of fully dense MB2-SiC and MB2-MC-SiC (M = Zr, Hf) Ultra High Temperature Ceramics (UHTCs). Specifically, Zr or Hf, B4C, Si, and (for the cases of ternary systems) graphite powders were first reacted by SHS to successfully form the desired composites. The resulting powders were then subjected to consolidation by SPS. In particular, by setting a dwell temperature level of 1800°C, a mechanical pressure of 20 MPa, and a non-isothermal heating time of 10 min, products with relative densities >98.5% were obtained for the all systems investigated within 30 min of total processing time. The characteristics of the resulting dense UHTCs, i.e. hardness, fracture toughness, and oxidation resistance, are similar to, and in some cases superior than, those related to analogous products synthesized by alternative, less rapid, methods.
机译:这项工作采用了SHS技术和火花等离子体烧结(SPS)技术的结合,以制造完全致密的MB2-SiC和MB2-MC-SiC(M = Zr,Hf)超高温陶瓷(UHTC)。具体而言,首先通过SHS使Zr或Hf,B4C,Si和(对于三元体系而言)石墨粉反应,以成功形成所需的复合材料。然后将所得粉末通过SPS固结。特别是,通过将驻留温度水平设置为1800°C,机械压力为20 MPa,非等温加热时间为10分钟,在30分钟内所研究的所有系统均获得了相对密度> 98.5%的产品。总处理时间。所得致密UHTC的特性,即硬度,断裂韧性和抗氧化性,与通过替代性,较不快的方法合成的类似产品相关的特性相似,并且在某些情况下优于这些特性。

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