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Effect of Thermo-mechanical Treatment on Mechanical Properties of High-nitrogen Containing Cr-Mn-Ni Austenitic Stainless Steels

机译:热处理对高氮Cr-Mn-Ni奥氏体不锈钢力学性能的影响

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摘要

To develop a high strength nonmagnetic stainless steel with excellent toughness, thermo-mechanical control process (TMCP) was applied to hot-forged products of Cr-Mn-Ni austenitic stainless steels with various levels of C and N. The yield strength in the as-hot-forged condition increases with increasing nitrogen contents. Carbon addition is detrimental to toughness because it promotes carbide precipitation at the grain boundary during hot forging, causing intergranular fracture at 293 K. In a low carbon and high nitrogen steel, 0.2% yield strength increases and toughness slightly decreases with lowering finish-forging temperature. It was found that a steel with a chemical composition of Fe-0.06C-20Cr-15Mn-4Ni-2Mo-0.64N can be strengthened by TMCP to a level of more than 1 000 MPa in 0.2% yield strength with maintaining its ductility and toughness. This excellent strength-toughness balance can be explained by austenite grain refinement and substructures generated by TMCP as well as strong solution hardening and grain size hardening by nitrogen.
机译:为了开发出具有优异韧性的高强度非磁性不锈钢,热力学控制工艺(TMCP)被用于各种C和N水平的Cr-Mn-Ni奥氏体不锈钢的热锻产品。随着氮含量的增加,热锻条件增加。碳的添加不利于韧性,因为它促进了热锻过程中碳化物在晶界的析出,并在293 K时引起晶界断裂。在低碳高氮钢中,随着精锻温度的降低,屈服强度提高了0.2%,韧性略有下降。 。发现通过TMCP可以将化学成分为Fe-0.06C-20Cr-15Mn-4Ni-2Mo-0.64N的钢增强到1000 MPa以上,并保持0.2%的屈服强度,并保持其延展性。韧性。这种优异的强度-韧性平衡可通过奥氏体晶粒细化和TMCP产生的亚结构以及氮的强固溶硬化和晶粒尺寸硬化来解释。

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