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首页> 外文期刊>BHM Berg und Huttenmannische Monatshefte >Tailoring the Mechanical Properties Through the Control of Heat Treatments in a Precipitation Hardening Metastable Stainless Steel
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Tailoring the Mechanical Properties Through the Control of Heat Treatments in a Precipitation Hardening Metastable Stainless Steel

机译:通过控制沉淀硬化稳定不锈钢中的热处理来定制机械性能

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摘要

This research focusses on a complex precipitation (Ni3(Ti,AI)) hardenable metastable stainless steel. Dual phase (austenite, γ/martensite, α') and ultrafine grained austenitic microstructures obtained after applying isochronal heat treatments (0.1-10°C/s) to a cold-rolled (CR) metastable stainless steel have been microstructurally and mechanically characterized using different experimental techniques (optical microscopy, SEM, TEM, magnetic measurements, tensile tests). A wide range of strength (2.1-1.1 GPa) and elongation (3-25%) values have been obtained using sub-size samples (7mm in gauge length). The scientific aim isthe understanding of those microstructural parameters and mechanisms that influence the achievement of ultra-fine grained microstructures and control or the mechanical behaviour of different complex microstructures in this type of steels. Whereas the industrial aim would be to expand the applicability of this steel and use this scientific knowledge to design steels with optimized microstructures and mechanical properties.
机译:该研究侧重于复杂的沉淀(Ni3(Ti,Ai))可硬化的亚稳态不锈钢。在将同胞热处理(0.1-10℃)施加到冷轧(CR)亚稳态不锈钢后获得的双相(奥氏体,γ/马氏体,α')和超细颗粒奥氏体微结构已经微妙和机械地表征不同的实验技术(光学显微镜,SEM,TEM,磁测量,拉伸试验)。使用亚尺寸样品获得了各种强度(2.1-1.1GPa)和伸长率(3-25%)值(测量值7mm)。科学旨在了解这些微观结构参数和机制,这些参数和机制影响了这种钢中不同复杂微观结构的不同复杂微观结构的控制。虽然工业目标是扩大该钢的适用性,并使用这种科学知识来设计具有优化的微观结构和机械性能的钢材。

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