升温率和应变率对30CrMnSi拉伸强度的影响  被引量:16

INFLUENCE OF HEATING RATE AND STRAIN RATE ON TENSILE STRENGTH OF 30CrMnSi

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作  者:王春奎[1] 黄晨光[1] 孙原龙 段祝平[1] 

机构地区:[1]中国科学院力学研究所

出  处:《金属学报》1995年第10期A475-A478,共4页Acta Metallurgica Sinica

基  金:国家高技术计划激光技术领域资助

摘  要:报道了硬度HRC为20和40的两种30CrMnSi材料在100─900℃的力学性能及升温率、应变率和热处理条件对抗拉强度、屈服强度的影响。在低温区,材料性能随温度的升高,呈现缓慢下降,其数值与常温相差不多,热处理状态对该区影响甚大,升温率有一定影响;在高温区,材料强度大大降低,其数值随温度变化不大,不同升温速率的影响及热处理状态影响消失;在中温区,材料性能随温度升高呈现快速下降趋势,热处理状态对材料性能影响大,不同升温率对材料性能影响不大。The influence of temperature, heating rate and strain rate on the tensile and yield strength of 30CrMnSi at the temperature range from 100℃ to 900℃ has been investigated. At low temperature region the performance parameters of material with a rise of temperature is dropped slowly and the heat treated condition has a great effect on the behavior of material, but the effect of elevating temperature rate can not be neglected. At high temperature region the material strength reduced greatly is not changed notably with the increase of temperature, heating rate and the heat treated condition. At the middle temperature region,the performance of material is fast dropped with the increase of temperature and the effects of the elevating temperature rate and the heat treated condition are not obvious.

关 键 词:热处理 应变率 力学性能 升温率 拉伸强度 铬钢 

分 类 号:TG161[金属学及工艺—热处理]

 

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