首页> 外文期刊>Journal of Materials Research and Technology >Effect of matrix carbon content and lath martensite microstructures on the tempered precipitates and impact toughness of a medium-carbon low-alloy steel
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Effect of matrix carbon content and lath martensite microstructures on the tempered precipitates and impact toughness of a medium-carbon low-alloy steel

机译:基质碳含量和Lath马氏体微观结构对中碳低合金钢的冲击沉淀物的影响

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Different austenitizing temperatures were used to obtain medium-carbon low-alloy (MCLA) steels with different initial states of tempering, including lath martensite microstructures and matrix carbon contents. The effects of these factors on the tempered carbides and impact toughness of the MCLA steels were investigated via optical microscopy (OM), scanning electron microscopy (SEM), electron backscatter diffraction (EBSD), X-ray diffraction (XRD) and transmission electron microscopy (TEM). The results showed that the matrix carbon content and lath martensite substructure sizes could be effectively controlled by the austenitizing temperature. The morphologies of the tempered carbides precipitated at the boundaries were controlled by both the matrix carbon content and the lath martensite substructure sizes. Higher matrix carbon content and boundary densities increased the nucleation rate and promoted the formation of spherical carbides. The spheroidization of carbides was conducive to improving the impact toughness. However, the decrease in the density of high-angle grain boundaries and the appearance of long strip-shaped carbides drastically reduced the impact toughness.
机译:使用不同的奥氏体化温度来获得具有不同初始状态的中碳低合金(MCLA)钢,包括Lath Martensite微观结构和基质碳含量。通过光学显微镜(OM),扫描电子显微镜(SEM),电子背散射衍射(EBSD),X射线衍射(XRD)和透射电子显微镜研究了这些因素对MCLA钢的钢化碳化物和MCLA钢的冲击韧性的影响(TEM)。结果表明,基质碳含量和Lath马氏体子结构尺寸可以通过奥氏体化温度有效地控制。通过基质碳含量和Lath马氏体子结构尺寸来控制在界限处沉淀的钢化碳化物的形态。更高的基质碳含量和边界密度增加了成核率并促进了球形碳化物的形成。碳化物的球化有利于改善冲击韧性。然而,高角度晶界密度和长条状碳化物的外观的降低大大降低了冲击韧性。

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