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Formation of core (M7C3)-shell (M23C6) structured carbides in white cast irons: A thermo-kinetic analysis

机译:核心(M7C3)-Shell(M23C6)在白色铸铁中的结构化碳化物:热动力学分析

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摘要

Core-shell structured carbides in white cast irons help reduce interfacial stress and failure, leading to higher resistance to wear. The present study is conducted to understand the mechanism for the formation of core-shell structured carbides in white cast irons through computational thermodynamics. In particular, efforts are made to determine the compositional ranges in which the core-shell structured carbides can form. Arrays of phase diagrams in stable and metastable equilibria were calculated to determine the stable regions of M23C6, M7C3 and Matrix, which are the basic phase assemblage for the core-shell morphology in high-Cr cast irons (HCCIs). Scheil-Gulliver and Lever-Rule solidifications were simulated for nine alloys with compositions selected from the stable/metastable regions to investigate the phase precipitation sequence, as-cast microstructures and compositions. The contour diagrams for the nucleation driving force were mapped and used to analyze the precipitating ability of each type and the configuration of carbide in its appropriate domains in casting during heat treatment. Thorough discussion is given to the effects of parent microstructure, temperature, and overall composition on the nucleation driving force for the M23C6 shell growth in order to guide fabrication of HCCIs with desired core-shell structured carbides.
机译:白铸铁中的核心壳结构碳化物有助于降低界面应力和失效,导致耐磨性更高。进行本研究以了解通过计算热力学在白色铸铁中形成核心壳结构碳化物的机制。特别地,制备努力确定其中核心壳结构化碳化物可以形成的组成范围。计算稳定和稳定性均衡的相图阵列以确定M23C6,M7C3和矩阵的稳定区域,这是高CR铸造铁杆(HCCIS)中核心壳形态的基本相位组合。为九合金模拟施氏凝固和杠杆规则凝固,其中含有选自稳定/稳定地区的组合物,以研究相沉淀序列,铸造微观结构和组合物。将核切割驱动力的轮廓图进行映射并用于分析热处理期间铸造的适当域中每种类型和碳化物构型的沉淀能力。对M23C6壳生长的母微观结构,温度和总体组成对母微观结构,温度和总体组成的影响彻底讨论,以引导HCCI的制造具有所需的核壳结构碳化物。

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