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A new family of cermets: Chemically complex but microstructurally simple

机译:一家新的金鱼家庭:化学复杂但微观结构简单

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摘要

Cermets based on Ti(C,N) have interesting properties, such as high wear resistance, high chemical stability and good mechanical strength at high temperature, but to become a viable alternative to cemented carbides, the fracture toughness and damage tolerance must be significantly improved. Complete solid-solution cermets (CSCs) have been proposed to further improve the mechanical properties of these materials. However, to develop this family of cermets with a high level of quality and reliability, using pre-fabricated complex carbonitrides is necessary instead of unalloyed mixtures as the raw ceramic material. A mechanochemical process called mechanically induced self-sustaining reaction (MSR) is suitable to obtain these complex carbonitrides with high stoichiometric control. On the other hand, high entropy alloys (HEAs), which can also be obtained by mechanochemical processes, are a good candidate to replace the current binder phase in cermets because they exhibit high strength and ductility at high temperature and good resistance to both wear and corrosion. In this work, a new family of CSCs based on (Ti,Ta,Nb)CxN1 − x with HEAs belonging to the Fe-Co-Ni-Cr-Mn-V system as the binder phase is developed by mechanochemical processes. With only two constituent phases, these cermets have a simple microstructure but a high compositional complexity because both the ceramic and binder phases are complex solid solutions with at least five components.
机译:基于Ti(C,N)的CERMET具有有趣的性能,例如高温耐磨性,高化学稳定性和良好的机械强度,而是成为粘合碳化物的可行替代品,必须显着改善断裂韧性和损坏耐受性。已经提出了完整的固溶体CERMET(CSC)以进一步改善这些材料的机械性能。然而,为了使用预制造的复合碳氮化合物,使用预先制造的复合碳氮化合物而不是未合金化的混合物作为原始陶瓷材料,以具有高水平的质量和可靠性,而是作为原始陶瓷材料的质量和可靠性。称为机械诱导的自维持反应(MSR)的机械化学方法适用于具有高化学计量对照的这些复合碳氮。另一方面,也可以通过机械化学方法获得的高熵合金(HEAS)是更换金属陶瓷中电流粘合剂相的良好候选者,因为它们在高温下表现出高强度和延展性,并且耐磨性良好腐蚀。在这项工作中,基于(Ti,Ta,Nb)CXN1 - X的新系列CSCS,其具有属于Fe-Co-Ni-Cr-Mn-V系统作为粘合剂相的掺杂剂的方法是通过机械化学方法开发的。只有两个组成阶段,这些金属丝网具有简单的微观结构,但具有高的组成复杂性,因为陶瓷和粘合剂相是具有至少五种组分的复杂固溶体。

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