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Influence of The Mo and V Contents on Microstructure and Secondary Hardening of 6Cr6W2MoV Steel

机译:MO和V含量对6CR6W2MoV钢微观结构和二次硬化的影响

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The influence of Mo and V contents on the microstructure and secondary hardening of 6Cr6W2MoV steel was studied in this paper, and the process factors and the transformation mechanism of the influence results were discussed by phase equilibrium thermodynamic analysis. The results show that, the microstructure of 6Cr6W2MoV steel is uniform and thin, in which the undissolved carbide size after quenching is 0.23μm. In the heating and cooling process of the annealing, the dissolution and precipitation of M_(23)C_6→M_6C carbides transformation can be used to carbides distributing uniform refinement. Adding an overmany Mo content will lead to coarsening of carbide particles due to small amplitude of M_(23)C_6→M_6C transformation. Adding an overmany V content will appear a small of the bulk MC carbide on the crystallization, so the heterogeneity of carbides is increasing. The tempering hardness of 6Cr6W2MoV steel is 63.5HRC, and when adding an overmany Mo content the maximal hardness arrives to 65HRC. Adding Mo changes the carbide composing, it is conducive to the variety of carbides precipitation strengthening near intermediate temperature and the tempering hardness increasing. When adding an overmany V content the more MC carbide well occupy more amount of C, the tempering temperature dispersion increases too, so the tempering hardness debases deservedly and the highest hardness only reaches HRC60.5.
机译:Mo和微观结构和6Cr6W2MoV钢的二次硬化v目录的影响在此进行了研究,并且该过程的因素和影响结果的变换机构均通过相平衡热力学分析讨论。结果表明,6Cr6W2MoV钢的显微组织是均匀且薄的,其中淬火后的未溶解碳化物的尺寸是0.23μm。在退火时,M_的溶解和沉淀的加热和冷却过程(23)C_6→M_6C碳化物转化可用于分发的碳化物均匀细化。加入overmany Mo含量将导致由于M_的小振幅(23)C_6→M_6C变换碳化物颗粒的粗大化。加入overmany V内容会出现一个小的结晶的大部分MC碳化物,因此碳化物的异质性正在增加。 6Cr6W2MoV钢的回火硬度为63.5HRC,并添加overmany Mo含量时的最大硬度到达65HRC。添加Mo改变碳化物组成,它有利于各种碳化物的析出强化接近中间温度和回火硬度增加。当添加overmany V含量越MC碳化物以及占据C,回火温度分散也增加的量越多,所以回火硬度贬低理所当然和最高的硬度仅达到HRC60.5。

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