Influence of cooling rate from normalizing temperature and tempering on strength of ferrite–pearlite steels

B. Mintz
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引用次数: 14

Abstract

AbstractThe influence of cooling rate from the normalizing temperature and tempering in the temperature range 450–600°C on the lower yield strength (LYS) and ultimate tensile strength (UTS) of two ferrite–pearlite structural steels has been examined. Falls in both LYS and UTS were obtained as a result of slow cooling or tempering; these falls were not related to grain-size changes. The processes controlling the falls in LYS and UTS were found to have activation energies of ∼170 kJ mol−1 and ∼290 kJ mol–1, respectively, and the kinetics of the processes obeyed t2/3 and t1/3 relationships, respectively (t being the time). The activation energy and kinetics for the process controlling the fall in UTS correspond to those associated with the spheroidization of pearlite, the rate-controlling factor being the self-diffusion of iron in the matrix, while the activation energy for the fall in LYS corresponds to that for diffusion of iron at the grain boundaries. An interesting relationship was also obtained between...
正火和回火冷却速度对铁素体-珠光体钢强度的影响
摘要研究了正火温度和回火温度450 ~ 600℃冷却速率对两种铁素体-珠光体结构钢的下屈服强度和极限抗拉强度的影响。LYS和UTS的下降都是缓慢冷却或回火的结果;这些下降与颗粒大小的变化无关。控制LYS和UTS下降的过程活化能分别为~ 170 kJ mol - 1和~ 290 kJ mol - 1,过程动力学分别服从t2/3和t1/3关系(t为时间)。控制UTS下降过程的活化能和动力学对应于珠光体球化过程的活化能和动力学,速率控制因素是铁在基体中的自扩散,而LYS下降的活化能对应于铁在晶界的扩散。在……之间也得到了一个有趣的关系。
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