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Investigation on wear behaviors of high-vanadium high-speed steel compared with high-chromium cast iron under rolling contact condition

机译:滚动接触条件下高钒高速钢与高铬铸铁的磨损行为研究

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The wear property of high-vanadium high-speed steel (HVHSS), compared with high-chromium cast iron, was studied using self-mate rolling wear testing apparatus under rolling contact condition, and the microstructures and failure behaviors were analyzed by electron microscopes. Results show that the relative wear resistance of HVHSS is four times higher than that of high-chromium cast iron. The initiation and propagation of cracks mainly depend on the substructure and morphology of carbides, which determine wear resistance of materials. It is difficult for cracks in HVHSS to initiate inside VC because of the reinforcement of MC-type nano-particles carbides inside VC. The cracks mainly initiate at the VC/matrix interface, and propagate along surface of VC, resulting in crack blunting. Whereas, the cracks in high-chromium cast iron mainly initiate inside M_7C_3 because of blocking of dislocation inside M_7C_3, resulting in dense crack-initiation sites inside M_7C_3. After propagating a short distance, those dense cracks join each other to form through main crack, resulting in rapid failure of high-chromium cast iron.
机译:使用自配合轧制磨损试验装置,在滚动接触条件下研究了高钒高速钢(HVHSS)与高铬铸铁的磨损性能,并通过电子显微镜分析了其显微组织和破坏行为。结果表明,HVHSS的相对耐磨性是高铬铸铁的四倍。裂纹的产生和扩展主要取决于碳化物的亚结构和形态,这决定了材料的耐磨性。由于VC内部MC型纳米颗粒碳化物的增强,HVHSS中的裂纹难以在VC内部引发。裂纹主要在VC /矩阵界面处产生,并沿VC表面传播,从而导致裂纹钝化。而高铬铸铁的裂纹主要是由于M_7C_3内部位错的阻塞而在M_7C_3内部产生,从而在M_7C_3内部形成了密集的裂纹萌生点。在短距离内传播后,这些致密的裂纹通过主裂纹彼此结合形成,导致高铬铸铁快速失效。

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