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首页> 外文期刊>Advances in materials science and engineering >Sintering Behavior, Microstructure, and Mechanical Properties: A Comparison among Pressureless Sintered Ultra-Refractory Carbides
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Sintering Behavior, Microstructure, and Mechanical Properties: A Comparison among Pressureless Sintered Ultra-Refractory Carbides

机译:烧结行为,显微组织和力学性能:无压烧结超耐火硬质合金之间的比较

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Nearly fully dense carbides of zirconium, hafnium, and tantalum were obtained by pressureless sintering at 1950°C with the addition of 5–20 vol% of MoSi2. Increasing the amount of sintering aid, the final density increased too, thanks to the formation of small amounts of liquid phase constituted by M-Mo-Si-O-C, where M is either Zr, Hf, or Ta. The matrices of the composites obtained with the standard procedure showed faceted squared grains; when an ultrasonication step was introduced in the powder treatment, the grains were more rounded and no exaggerated grains growth occurred. Other secondary phases observed in the microstructure were SiC and mixed silicides of the transition metals. Among the three carbides prepared by pressurless sintering, TaC-based composites had the highest mechanical properties at room temperature (strength 590 MPa, Young's modulus 480 GPa, toughness 3.8 MPa·m1/2). HfC-based materials showed the highest sinterability (in terms of final density versus amount of sintering aid) and the highest high-temperature strength (300 MPa at 1500  °C).
机译:通过在1950°C下进行无压烧结并添加5-20vol%的MoSi2,可获得锆,ha和钽几乎完全致密的碳化物。由于形成了少量的由M-Mo-Si-O-C组成的液相,其中M为Zr,Hf或Ta,因此增加了烧结助剂的量,最终密度也增加了。用标准方法获得的复合材料的基体显示出刻面的正方形颗粒;当在粉末处理中引入超声处理步骤时,晶粒更加圆润,并且没有出现过大的晶粒生长。在显微组织中观察到的其他第二相是SiC和过渡金属的混合硅化物。在无压烧结制备的三种碳化物中,基于TaC的复合材料在室温下具有最高的机械性能(强度590 MPa,杨氏模量480 GPa,韧性3.8 MPa·m1 / 2)。 HfC基材料显示出最高的烧结性(就最终密度与烧结助剂的量而言)和最高的高温强度(在1500 C下为300 MPa)。

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