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Development of Low and Middle Carbon Martensite Spring Steel with High Strength and Toughness for Automobile

机译:高强度和汽车韧性的低和中碳马氏体弹簧钢的研制

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The conventional middle and high carbon spring steels have some drawbacks in properties, production and application. In order to meet the demands of rapid development of automobile, a new low and middle carbon spring steel 35Si2CrMnVB, C0.34, Si1.66, Mn0.80, Cr0.67, V0.13, B0.001, P0.011, S0.014 wt.percent, has been developed. Comparison between the new spring steel 35Si2CrMnVB and the conventional spring steel 60Si2MnA, C0.61, Si1.75, Mn0.76, P0.021, S0.018 wt.percent, shows that the new spring steel has not only high strength, good ductility, good comprehensive mechanical properties, but also low decarbonization tendency, sufficient hardenability and high elastic sag resistance, etc.. The microstructure change in quenched steel caused by the decreasing of carbon contents is detected through metallographic observation, the new low and middle carbon spring steel 35Si2CrMnVB after quenching is composed of almost lath martensite with high dislocation density and only a little martensite with twin structure. It is testified that to develop low carbon spring steel with more excellent properties for automobile is feasible.
机译:传统的中间和高碳弹簧钢在性质,生产和应用中具有一些缺点。为了满足汽车快速发展的需求,新的低和中碳弹簧钢35si2crmnvb,c0.34,si1.66,mn0.80,cr0.67,v0.13,b0.001,p0.011, S0.014 Wt.percent已经开发出来。新的弹簧钢35si2crmnvb和常规弹簧钢60si2mna,c0.61,si1.75,mn0.76,p0.021,s0.018 wt.percent的比较表明,新的弹簧钢不仅具有高强度,良好延展性,良好的综合力学性能,但脱碳趋势也低,充足的淬透性和高弹性下垂抗性等。通过金相观察检测由碳含量降低引起的淬火钢中的微观结构变化,新的低和中碳弹簧检测到碳含量下降。淬火后的钢35Si2CrmnVB由几乎具有高分子密度的Lath Martensite组成,并且只有一个带有双结构的小马氏体。据证明,为了开发低碳弹簧钢,具有更优异的汽车性能是可行的。

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