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Elevated-temperature properties of one long-life high-strength gun steel
引用本文:MaoqiuWang HanDong QiWang. Elevated-temperature properties of one long-life high-strength gun steel[J]. 北京科技大学学报(英文版), 2004, 11(1): 62-66
作者姓名:MaoqiuWang HanDong QiWang
作者单位:DivisionofStructuralMaterials,CentralIron&SteelResearchInstitute,Beijing100081,China
摘    要:
The hardness, tensile strength and impact toughness of one quenched and tempered steel with nominal composition of Fe0.25C-3.0Cr-3.0Mo-0.6Ni-0. 1Nb (mass fraction) both at room temperature and at elevated temperatures were investigated in order to develop high-strength steel for long-life gun barrel use. It is found that the steel has lower decrease rate of tensile strength at elevated temperature in comparison with the commonly used G4335V high-strength gun steel, which contains higher Ni and lower Cr and Mo contents. The high elevated-temperature strength of the steel is attributed to the strong secondary hardening effect and high tempering softening resistance caused by the tempering precipitation of fine Mo-rich M2C carbides in the α-Fe matrix. The experimental steel is not susceptible to secondary hardening embrittlement, meanwhile, its room-temperature impact energy is much higher than the normal requirement of impact toughness for high strength gun steels. Therefore, the steel is suitable for production of long-life high-strength gun barrels with the combination of superior elevated-temperature strength and good impact toughness.

关 键 词:枪炮钢 硬度 拉伸强度 冲击韧性 铬 钼 镍

Elevated-temperature properties of one long-life high-strength gun steel
Maoqiu Wang,Han Dong,Qi Wang. Elevated-temperature properties of one long-life high-strength gun steel[J]. Journal of University of Science and Technology Beijing, 2004, 11(1): 62-66
Authors:Maoqiu Wang  Han Dong  Qi Wang
Abstract:
The hardness, tensile strength and impact toughness of one quenched and tempered steel with nominal composition of Fe0.25C-3.0Cr-3.0Mo-0.6Ni-0.1Nb (mass fraction) both at room temperature and at elevated temperatures were investigated in order to develop high-strength steel for long-life gun barrel use. It is found that the steel has lower decrease rate of tensile strength at elevated temperature in comparison with the commonly used G4335V high-strength gun steel, which contains higher Ni and lower Cr and Mo contents. The high elevated-temperature strength of the steel is attributed to the strong secondary hardening effect and high tempering softening resistance caused by the tempering precipitation of fine Mo-rich M2C carbides in the α-Fe matrix. The experimental steel is not susceptible to secondary hardening embrittlement, meanwhile, its room-temperature impact energy is much higher than the normal requirement of impact toughness for high strength gun steels. Therefore, the steel is suitable for production of long-life high-strength gun barrels with the combination of superior elevated-temperature strength and good impact toughness.
Keywords:secondary hardening steel  elevated-temperature strength  hot hardness  impact toughness
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