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Effect of Austenitizing Temperature on Microsfructure and Mechanical Properties of Semi-High-Speed Steel Cold-Forged Rolls

机译:奥氏体化温度对半高速钢冷锻轧辊组织和力学性能的影响

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摘要

The effect of austenitizing temperature on the microstructure and mechanical properties of semi-high-speed steel (S-HSS) cold-forged rolls was investigated. Low-temperature austenitizing below 1313 K induced carbide coarsening during subsequent tempering at 973 K due to the nucleation effect of undissolved M_7C_3. On the other hand, the heavy dissolution of M_7C_3 above 1353 K caused the fine carbide formation on lath and plate boundaries, which retarded the subgrain growth during tempering. The increase in strength with increasing austenitizing temperature was attributed to the fine carbide distribution and the high dislocation density. Furthermore, as the austenitizing temperature increased, the impact energy markedly reduced, due to the large prior austenite grain size and the high strength. Finally, based on the microstructure and mechanical properties, an optimal austenitizing temperature range between 1313 and 1333 K was determined.
机译:研究了奥氏体化温度对半高速钢(S-HSS)冷锻轧辊的组织和力学性能的影响。由于未溶解的M_7C_3的成核作用,低于1313 K的低温奥氏体化会在随后的973 K回火期间引起碳化物粗化。另一方面,M_7C_3在1353 K以上的大量溶解导致在板条和板块边界上形成了精细的碳化物,从而阻碍了回火过程中亚晶粒的生长。强度随着奥氏体化温度的增加而增加,这归因于细小的碳化物分布和高位错密度。此外,随着奥氏体温度的升高,由于大的先前奥氏体晶粒尺寸和高强度,冲击能量显着降低。最后,根据显微组织和力学性能,确定了1313至1333 K的最佳奥氏体化温度范围。

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