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钢丝热处理电加热奥氏体化工艺参数研究
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作者 李权大 王世富 张青 《有色金属设计》 2018年第1期114-116,共3页
钢丝电加热热处理淬火获得的索氏体组织首先要将钢丝的组织转变为奥氏体组织,然后再等温冷却成索氏体组织,材料选用共析钢,铅淬火设备选用电接触加热炉,对共析钢奥氏体形成选择2种工艺进行试验。结果表明,2种工艺条件下奥氏体都能形成,... 钢丝电加热热处理淬火获得的索氏体组织首先要将钢丝的组织转变为奥氏体组织,然后再等温冷却成索氏体组织,材料选用共析钢,铅淬火设备选用电接触加热炉,对共析钢奥氏体形成选择2种工艺进行试验。结果表明,2种工艺条件下奥氏体都能形成,铅淬火后的索氏体组织都能满足制绳钢丝和弹簧用钢丝要求;2#工艺(DV值=120)钢丝韧性更好,生产效率更高,节能效果显著。 展开更多
关键词 钢丝 电接触加热 奥氏体工艺参数 索氏体
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Effects of deformation parameters on formation of pro-eutectoid cementite in hypereutectoid steels
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作者 管仁国 赵占勇 +2 位作者 钞润泽 刘相华 C.S.LEE 《Journal of Central South University》 SCIE EI CAS 2014年第4期1256-1263,共8页
Brittle pro-eutectoid cementite that forms along prior-austenite in hypereutectoid steels is deleterious to mechanical properties. The optimum process parameters which suppress the formation of pro-eutectoid cementite... Brittle pro-eutectoid cementite that forms along prior-austenite in hypereutectoid steels is deleterious to mechanical properties. The optimum process parameters which suppress the formation of pro-eutectoid cementite in hypereutectoid steels with carbon content in the range of 0.8%-1.3% in mass fraction, were investigated. Pro-eutectoid cementite formation is effectively hindered by increasing the deformation temperature and decreasing the amount of strain. Transformation at lower temperatures close to the nose of the cooling-transformation diagram also reduces the tendency of the formation of pro-eutectoid cementite. Control of prior-austenite grain size and grain boundary conditions is important. Due to larger number of nucleation sites, finer prior-austenite grain size results in the acceleration of transformation to pro-eutectoid cementite. However, large prior-austenite and straight boundaries lead to less nucleation sites of pro-eutectoid cementite. The cooling rate and carbon content should be reduced as much as possible. The transformation temperature below 660 °C and the strain of 0.5 at deformation temperature of 850 °C are suggested. 展开更多
关键词 pro-eutectoid cementite hypereutectoid steel hot deformation transformation temperature
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