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Continuous Hardening During Isothermal Aging at 723 K (450 °C) of a Precipitation Hardening Stainless Steel

机译:在723 K(450°C)的沉淀硬化不锈钢的等温时效过程中连续硬化

摘要

The isothermal aging behavior of a cold-rolled precipitation hardening stainless steel has been studied at 723 K (450 °C) for holding times up to 72 hours. The precipitation hardening has been investigated using microhardness Vickers (Hv), thermoelectric power (TEP) measurements, and tensile testing. Microhardness compared to TEP measurements is more sensitive to detect the initial stages of aging. Two precipitation regimes have been observed: the first one related to the formation of Cu-clusters for aging times below 1 hour and a second one associated with formation of Ni-rich precipitates. The results show that the material exhibits an outstanding continuous age strengthening response over the aging time investigated, reaching a hardness of 710 ± 4 H and an ultimate tensile strength (σ) of 2.65 ± 0.02 GPa after 72 hours. Engineering stress-plastic strain curves reveal that the strength increases and the ductility decreases as the aging time increases. However, after prolonged holding times (24–72 hours) and, although small, a rise in both the strength and the total elongation is observed. The precipitation kinetics can be well predicted over the entire range of aging times by the Johnson–Mehl–Avrami–Kolmogorov (JMAK) equation. Finally, a reliable linear hardness-yield strength correlation has been found, which enables a rapid evaluation of the strength from bulk hardness measurements.
机译:研究人员在723 K(450°C)下对冷轧沉淀硬化不锈钢的等温时效行为进行了长达72小时的保温时间。已经使用显微硬度维氏(Hv),热电功率(TEP)测量和拉伸测试研究了沉淀硬化。与TEP测量相比,显微硬度对检测老化的初始阶段更为敏感。已经观察到两种沉淀方式:第一种与老化时间低于1小时的Cu团簇的形成有关,第二种与富Ni沉淀物的形成有关。结果表明,该材料在研究的老化时间内表现出出色的连续老化强度响应,在72小时后达到710±4 H的硬度和2.65±0.02 GPa的极限拉伸强度(σ)。工程应力-塑性应变曲线表明,随着时效时间的增加,强度增加,延性降低。但是,在延长保温时间(24-72小时)后,尽管强度很小,但强度和总伸长率均出现了上升。约翰逊-梅尔-阿夫拉米-柯尔莫哥洛夫(JMAK)方程可以很好地预测整个老化时间范围内的降水动力学。最终,找到了可靠的线性硬度-屈服强度相关性,从而可以通过整体硬度测量快速评估强度。

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