Ab'/> Development of electric resistance sintering process for the fabrication of hard metals: Processing, microstructure and mechanical properties
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Development of electric resistance sintering process for the fabrication of hard metals: Processing, microstructure and mechanical properties

机译:用于制备硬质金属的电阻烧结过程的开发:加工,微观结构和机械性能

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AbstractThis work presents the development of the Electrical Resistance Sintering (ERS) process for the fabrication of hard metals. The compositions of the materials produced were WC with 6 and 10wt% of Co. In addition to the specific characteristics of the technology, the characterization of the produced parts is presented and compared to materials obtained by conventional processes.The parts produced by ERS present densities comparable to the ones obtained by conventional methods. The microstructural comparison shows a considerable grain size reduction in the ERS materials which consequently brings a hardness increase. ERS materials show similar fracture toughness to conventional ones.The very fast sintering allows performing the process without any protective atmosphere, therefore making this process very attractive for the production of materials that need to be sintered under non-oxidising environments. The total duration of the cycle, including heating, holding time and cooling is few seconds.Finally, some considerations about the scale up and possible industrialization of the technology are explained.Highlights?Development of a new process for the fabrication of hard metals?Specific characteristics of the technology and about the materials produced?Microstructural characterization of the obtained products compared to conventional hard metals?Mechanical and magnetic characterization of the obtained products compared to conventional hard metals?Practical considerations about the technology regarding processing time and energy consumption]]>
机译:<![cdata [ 抽象 本作工作表明了用于制造硬质金属的电阻烧结(ERS)过程的开发。除了技术的具体特征外,生产的材料的组合物为6和10wt%,呈现出产生的部件的表征,并与通过常规方法获得的材料进行比较。 所用常规方法获得的零件产生的零件呈现相当的密度。微观结构比较显示了粒度的相当大的晶粒尺寸减小,从而使硬度增加。 ERS材料显示出与常规的材料类似的骨折韧性。 非常快速的烧结允许在没有任何保护气氛的情况下执行该过程,从而制造这一过程非常有吸引力,用于生产需要在非氧化环境下烧结的材料。循环的总持续时间,包括加热,保持时间和冷却是几秒钟。 最后,关于比例的一些考虑因素解释和可能的技术产业化。 亮点 开发硬质金属的制造新进程 技术的特定特性以及所产生的材料 与常规硬质金属相比,所得产品的微观结构表征 机械和磁表征获得的产品与常规硬质金属相比 关于处理时间和能量消耗技术的实践考虑 < / ce:抽象-sec> ]]>

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