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The Effect of Test Temperature on Deformation Microstructure and Fracture Mechanisms in CrMn High-Nitrogen Steels Alloyed (0-3 wt.%) with Vanadium

机译:试验温度对含钒合金(0-3 wt。%)的CrMn高氮钢的变形组织和断裂机理的影响

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摘要

A temperature dependence of the tensile mechanical properties, microstructure and fracture mechanism of high-nitrogen Fe-(19-23)Cr-(17-21)Mn-(0-3)V-(0.1-0.3)C-(0.5-0.9)N vanadium-free and vanadium-containing steels was investigated. For all steels, the 0.2% offset yield strength and strain-hardening drastically increase with a decrease in test temperature. This is associated with high interstitial solid solution strengthening of the steels and more pronounced twinning and stacking-fault formation during straining below room temperature. For the vanadium-free steel, a ductile-to-brittle transition was evaluated: at 77K specimens destroy by cleavage mechanism while at room temperature steels show ductile fracture. Vanadium-alloying provides a particle strengthening of the steels and, at the same time, reduce solid-solution strengthening. Increase of vanadium concentration fully or partially suppress brittle fracture of the steels at 77K. Particle strengthening changes interstitial solid-solution effect, dislocation arrangement and slip/twinning relation in vanadium-containing high-nitrogen steels compared to vanadium-free one.
机译:高氮Fe-(19-23)Cr-(17-21)Mn-(0-3)V-(0.1-0.3)C-(0.5-)的拉伸力学性能,显微组织和断裂机理的温度依赖性0.9)N不含钒和含钒的钢进行了研究。对于所有钢,随着测试温度的降低,0.2%的偏移屈服强度和应变硬化急剧增加。这与钢的高间隙固溶强化和在低于室温的应变过程中更明显的孪晶和堆积缺陷形成有关。对于不含钒的钢,评估了其韧性到脆性的转变:在77K的试样中,开裂机理会破坏样品,而在室温下,钢则显示出韧性断裂。钒合金可增强钢的颗粒强度,同时降低固溶强度。钒浓度的增加完全或部分抑制了77K时钢的脆性断裂。与不含钒的钢相比,颗粒强化会改变含钒高氮钢的间隙固溶效应,位错排列和滑移/孪生关系。

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