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Effect of tempering temperature on the microstructure and mechanical properties of a 0.1C steel with high strength and low yield ratio

机译:回火温度对0.1℃钢的微观结构和力学性能的影响,高强度和低屈服比

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摘要

The influence of tempering temperature on the microstructure and mechanical properties of low carbon low alloy steel was investigated. The results show that tempering temperature has considerable influence on both yield strength and tensile strength. With the increase in tempering temperature, the yield strength increases first and then decreases after it reaches the highest point at 600°C with a strength of 843MPa, while the tensile strength decreases fastly from 550°C to 650°C and keeps stable after increasing drastically at 720°C. The yield ratio is about 0.60 except at 600°C and 650°C with a high yield ratio of 0.90, while the total elongation has little change. It is concluded that the major change of mechanical properties after tempering has a connection with the decomposition of M/A(martensite/austenite) islands, the recovery of dislocations and the precipitation of alloy elements.
机译:研究了回火温度对低碳低合金钢微观结构和力学性能的影响。结果表明,回火温度对屈服强度和拉伸强度具有相当大的影响。随着回火温度的增加,屈服强度首先增加,然后在600℃下达到最高点后,强度为843MPa,而拉伸强度在550℃至650℃下速度降低,并且在增加后保持稳定在720°C急剧上。屈服比为约0.60,除600℃和650℃,屈服比为0.90,而总伸长率几乎没有变化。结论是,回火后力学性能的主要变化与M / A(马氏体/奥氏体)岛的分解有关,脱位的回收和合金元素的沉淀。

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