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Highly Efficient and Low-Temperature Preparation of Plate-Like ZrB2-SiC Powders by a Molten-Salt and Microwave-Modified Boro/Carbothermal Reduction Method

机译:熔融盐和微波改性硼/碳热还原法高效低温制备平板状ZrB2-SiC粉

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摘要

To address the various shortcomings of a high material cost, energy-intensive temperature conditions and ultra-low efficiency of the conventional boro/carbothermal reduction method for the industrial preparation of ZrB2-SiC powders, a novel molten-salt and microwave-modified boro/carbothermal reduction method (MSM-BCTR) was developed to synthesize ZrB2-SiC powders. As a result, phase pure ZrB2-SiC powders can be obtained by firing low-cost zircon (ZrSiO4), amorphous carbon (C), and boron carbide (B4C) at a reduced temperature of 1200 °C for only 20 min. Such processing conditions are remarkably milder than not only that required for conventional boro/carbothermal reduction method to prepare phase pure ZrB2 or ZrB2-SiC powders (firing temperature of above 1500 °C and dwelling time of at least several hours), but also that even with costly active metals (e.g., Mg and Al). More importantly, the as-obtained ZrB2 particles had a single crystalline nature and well-defined plate-like morphology, which is believed to be favorable for enhancing the mechanical properties, especially toughness of their bulk counterpart. The achievement of a highly-efficient preparation of such high-quality ZrB2-SiC powders at a reduced temperature should be mainly attributed to the specific molten-salt and microwave-modified boro/carbothermal reduction method.
机译:为了解决工业生产ZrB2-SiC粉的新型硼/碳热还原方法,新型熔融盐和微波改性的硼/碳的高材料成本,能源密集型温度条件和超低效率的各种缺点研制了碳热还原法(MSM-BCTR)合成ZrB2-SiC粉末。结果,通过在1200°C的降低的温度下仅烧制低成本锆石(ZrSiO4),无定形碳(C)和碳化硼(B4C)即可获得相纯ZrB2-SiC粉末。这样的加工条件不仅比常规的硼/碳热还原法制备相纯ZrB2或ZrB2-SiC粉所需的条件温和(烧成温度高于1500°C,停留时间至少为几小时),甚至比使用昂贵的活性金属(例如,镁和铝)。更重要的是,如此获得的ZrB2颗粒具有单晶性质和明确的板状形态,这被认为有利于增强其机械性能,尤其是其体相的韧性。在降低的温度下高效制备这种高质量的ZrB2-SiC粉末应主要归因于特定的熔盐和微波改性的硼/碳热还原法。

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