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Aging Behaviour in Copper Bearing High Strength Low Alloy Steels

机译:含铜高强度低合金钢的时效行为

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Strengthening due to precipitation of copper and microalloying elements is a phenomenon utilized in the design of some HSLA steels for naval structural applications. In the present work, precipitation of copper and associated property changes during aging of three Cu-containing HSLA steels were investigated. Electrical resistivity change during isothermal aging of one low carbon steel was compared with that for HSLA steels with a view to evaluating the kinetics of copper precipitation in the latter. The results fitted to Johnson-Mehl-Avrami equation indicate that this precipitation occurs in two consecutive stages with activation energy in the range of 114-128 kJ/mol and 64-77 kJ/mol, respectively. These values suggest a dominant role of the high dislocation density of the martensite matrix in the aging process. The peak hardness during isochronal (1 h) aging was observed in the aging temperature range of 500-550 deg C, whereas Charpy impact toughness was lowest for the samples aged at 450 deg C. The fractographs of the Charpy specimens were in good agreement with the impact strength measurements, apparently indicating an adverse effect of coherent copper precipitates on the impact properties.
机译:由于铜和微合金元素的析出而引起的强化是一种用于海军结构应用的某些HSLA钢的设计中使用的现象。在目前的工作中,研究了三种含铜HSLA钢在时效过程中铜的析出及相关性能的变化。将一种低碳钢与HSLA钢在等温时效过程中的电阻率变化进行了比较,以评估后者中铜沉淀的动力学。根据Johnson-Mehl-Avrami方程拟合的结果表明,该降水分两个连续阶段发生,活化能分别为114-128 kJ / mol和64-77 kJ / mol。这些值表明在时效过程中马氏体基体的高位错密度起着主导作用。在500-550℃的时效温度范围内,在等时(1 h)时效过程中观察到了峰值硬度,而在450℃时效的样品中,夏比冲击韧性最低。夏比试样的分形图与冲击强度的测量结果,显然表明相干铜沉淀物对冲击性能的不利影响。

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