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Effect of Boron on Delayed Fracture Resistance of Medium-Carbon High Strength Spring Steel

机译:硼对中碳高强度弹簧钢抗延迟断裂性能的影响

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The delayed fracture behavior of medium-carbon high strength spring steel containing different amounts of boron (0. 000 5% , 0. 001 6%) was studied using sustained load delayed fracture test. The results show that delayed fracture resistance of boron containing steels is higher than that of conventional steel 60Si2MnA at the same strength level and it increases with the increase of boron content from 0. 000 5% to 0. 001 6%. The delayed fracture mode is mainly intergranular in the boron containing steels tempered at 350 ℃ , which indicates that the addition of boron does not change the fracture character. However, the increase of boron content enlarges the size of the crack initiation area. Further study of phase analysis indicates that most boron is in solid solution, and only a very small quantity of boron is in the M_3(C, B) phase.
机译:使用持续载荷延迟断裂试验研究了含不同量硼(0.005%,0.001 6%)的中碳高强度弹簧钢的延迟断裂行为。结果表明,在相同强度水平下,含硼钢的抗延迟断裂性能比常规钢60Si2MnA高,并且随着硼含量从0. 5%到0. 001 6%的增加而增加。在350℃回火的含硼钢中,延迟断裂模式主要是晶界的,这表明加入硼不会改变断裂特性。然而,硼含量的增加扩大了裂纹萌生区域的尺寸。对相分析的进一步研究表明,大多数硼处于固溶体状态,只有极少量的硼处于M_3(C,B)相。

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