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Effects of heat treatment processes on microstructure and properties of 2·25Cr-1Mo-0·25V HSLA steels

机译:热处理工艺对2·25Cr-1Mo-0·25V HSLA钢组织和性能的影响

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摘要

In the present paper, the effects of the heat treatment processes with two conditioning treatments and four quenching-tempering processes on the mechanical properties of 2·25Cr-1Mo-0·25V high strength low alloyed (HSLA) steel are investigated. The results show that the conditioning treatments have obvious effects on the low temperature impact energy but little effect on the tensile strength. The elevation of the final austenitising temperature increases the strength, whereas it results in the decrease in the low temperature impact energy due to the coarse microstructure. The results of the fracture surfaces analysis further make sure that the fracture surfaces of tensile specimens all exhibit ductile characters with a lot of dimples. However, the fracture surfaces of impact specimens exhibit two typical fracture characters, i.e. the ductile and brittle fracture surface corresponding to the fine and coarse microstructures respectively. In addition, the elongation and reduction in area seem to be insensitive to the heat treatments. Meanwhile, the impact fracture mode is more sensitive to the grain size and not to the low temperature impact energy.
机译:本文研究了两种热处理工艺和四种淬火回火工艺对2·25Cr-1Mo-0·25V高强度低合金(HSLA)钢力学性能的影响。结果表明,调理处理对低温冲击能有明显影响,而对拉伸强度影响不大。最终奥氏体化温度的升高会提高强度,而由于粗糙的微观结构,会导致低温冲击能的降低。断裂表面分析的结果进一步确保了拉伸试样的断裂表面均显示出具有许多凹坑的延展性。然而,冲击试样的断裂表面表现出两个典型的断裂特征,即,分别对应于精细和粗糙微观结构的韧性和脆性断裂表面。另外,面积的伸长和减小似乎对热处理不敏感。同时,冲击断裂模式对晶粒尺寸更敏感,而对低温冲击能量不敏感。

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