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A Comparison Study on the Strengthening and Toughening Mechanism between Cu-Bearing Age-Hardening Steel and NiCrMoV Steel

机译:Cu承载型硬化钢和NiCRMOV钢的强化和增韧机理的比较研究

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摘要

Cu-bearing age-hardening steel has significant potential in shipbuilding applications due to its excellent weldability as compared to conventional NiCrMoV steel. Not much research has been carried out to analyze the differences in the mechanisms of strength and toughness between Cu-bearing age-hardening and NiCrMoV steel. Both steels were heat treated under the same conditions: they were austenized at 900 °C and then quenched to room temperature, followed by tempering at 630 °C for 2 h. The uniaxial tensile test reveals that the Cu-bearing age-hardening steel exhibits relatively lower strength but larger plasticity than NiCrMoV steel. The lower contents of Carbon and other alloying elements is one of possible reasons for these differences in mechanical properties. Transmission Electron Microscope observations show that two types of precipitates, Cr carbides and Cu-rich particles, exist in tempered Cu-bearing age-hardening steel. Cu-rich particles with sizes of 20–40 nm can inhibit the dislocation motion during deformation, which then results in dislocation pile ups and multiplication; this makes up the strength loss of Cu-bearing age-hardening steel and simultaneously improves its plasticity.
机译:由于其与传统的NiCRMOV钢相比,Cu轴承的时效硬化钢具有由于其优异的可焊性而具有显着潜力。已经进行了不多的研究,以分析Cu轴承年龄硬化与NiCRMOV钢之间的强度和韧性机制的差异。在相同的条件下处理两个钢在相同的条件下进行热处理:将它们在900℃下浸润,然后淬灭至室温,然后在630℃下回火2小时。单轴拉伸试验表明,Cu承载年龄硬化钢表现出相对较低的强度但比NiCRMOV钢更大的可塑性。碳和其他合金元素的较低含量是这些机械性能差异的可能原因之一。透射电子显微镜观察表明,两种类型的沉淀物,Cr碳化物和富含Cu的颗粒,存在于钢化铜型硬化钢中。富含尺寸为20-40nm的Cu的颗粒可以抑制变形过程中的位错运动,然后导致位错堆积和倍增;这弥补了Cu承载年龄硬化钢的强度损失,同时提高其可塑性。

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