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Transformation kinetics and resulting microstructure in MMC reinforced with TiC particles

机译:TiC颗粒增强的MMC中的转变动力学和所得的微观结构

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The phase transformation kinetics on cooling and resulting microstructures of steel-hased matrix composites (MMC) reinforced with TiC particles by powder metallurgy were studied. In addition, the phase transformation kinetics of the MMC were compared to those of the same steel without TiC and consolidated in the same conditions. The presence of TiC particles strongly favors the diffusive transformations in the steel matrix of the MMC. Different complementary techniques (XRD, SEM, TEM/EDX, atom probe tomography, in situ synchrotron XRD) were performed to analyze the chemical reactivity between TiC particles and the steel powders occurring during consolidation process and further heat treatments. Composition changes in the TiC as well as in the matrix were characterized. The chemical composition after treatment in the TiC particles tends toward the thermodynamic calculations with ThermoCalc. The effect of changes in chemical composition and the role of TiC particles acting as new favorable nucleation sites are discussed in regards to the obtained results.
机译:研究了粉末冶金用TiC颗粒增强的钢基基体复合材料(MMC)的冷却相变动力学以及所得的微观结构。另外,将MMC的相变动力学与没有TiC并在相同条件下固结的相同钢进行了比较。 TiC颗粒的存在强烈促进了MMC钢基质中的扩散转变。进行了不同的补充技术(XRD,SEM,TEM / EDX,原子探针层析成像,原位同步加速器XRD)来分析TiC颗粒与钢粉在固结过程和进一步热处理过程中发生的化学反应性。表征了TiC以及基质中的成分变化。 TiC颗粒中经过处理的化学成分趋向于通过ThermoCalc进行热力学计算。关于获得的结果,讨论了化学组成变化的影响以及TiC颗粒作为新的有利成核位点的作用。

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