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EFFECT OF MOLYBDENUM ON THE MICROESTRUCTURE AND THERMAL EXPANSION OF DUCTILE IRON

机译:钼对球墨铸铁组织和热膨胀的影响

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摘要

This work studies the Molybdenum effect on the microestructure, mechanical properties of an as-cast ductile iron. For this study five ductile irons with different amounts of Molybdenum each were made in an induction furnace. In this material nodule count and modularity is affected by the Molybdenum additions; The iron's matrix, nodules and the phase were analyzed using scanning electron microscopy detecting Molybdenum only in the matrix. Mechanical properties such as hardness, microhardness, tensile strength and yield strength show increments as the Molybdenum amount is increased. In the same way, ferrite and pearlite phases display a variation in their percentage as the contents of the alloy element increase. This element has a marked influence on the pearlite interlaminar spacing. From the obtained results we conclude that Molybdenum in these quantities dissolves in solid ferrite solution during the solidification process, improving the material's mechanical properties.
机译:这项工作研究了钼对铸态球墨铸铁的微观结构和力学性能的影响。为了进行这项研究,在感应炉中制作了五种不同钼含量的球墨铸铁。在这种材料中,钼的添加会影响结核的数量和模块性。使用扫描电子显微镜仅检测基质中的钼,分析了铁的基质,结核和相。随着钼量的增加,诸如硬度,显微硬度,抗拉强度和屈服强度的机械性能显示出增加。同样,随着合金元素含量的增加,铁素体和珠光体相的百分比也发生变化。该元素对珠光体层间间距有显着影响。根据获得的结果,我们得出结论,在固化过程中,这些数量的钼溶解在固态铁素体溶液中,从而改善了材料的机械性能。

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