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Effect of chemical composition and sintering conditions on the mechanical properties of sintered duplex stainless steels

机译:化学成分和烧结条件对双相烧结不锈钢力学性能的影响

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Duplex stainless steels were obtained through powder metallurgy technology from austenitic AISI 316L and ferritic AISI 430L powders mixed in different amounts to obtain ratios of austenite/ferrite of 25/75, 50/50 and 75/25. Prepared powder mixes were compacted at 650 or 750 MPa and sintered in N_2-H_2 atmosphere (95%-5%) at several sintering conditions and with three sintering cooling rates (furnace, gas and water). Mechanical properties were evaluated using tensile testing and macro-microhardness. The cooling rate was the main factor affecting the microstructure. A full microstructural study for the three cooling rates has been performed. The mechanical behaviour was a function of the cooling rate and the chemical composition. For furnace cooling, the sample with 75/25 of austenite/ferrite powders showed the best result. A hardening effect for the water cooling process was observed with the duplex stainless steels.
机译:通过粉末冶金技术从奥氏体AISI 316L和铁素体AISI 430L粉末以不同量混合获得奥氏体/铁素体比例为25 / 75、50 / 50和75/25的双相不锈钢。将制得的粉末混合物在650或750 MPa下压实,并在N_2-H_2气氛(95%-5%)中在几种烧结条件下以三种烧结冷却速率(炉,气和水)烧结。使用拉伸测试和宏观显微硬度评估机械性能。冷却速率是影响组织的主要因素。对三种冷却速率进行了完整的微观结构研究。机械行为是冷却速率和化学组成的函数。对于炉内冷却,具有75/25的奥氏体/铁素体粉末的样品显示出最佳结果。用双相不锈钢观察到了水冷过程的硬化效果。

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