首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Effect of Boron Addition on Microstructural Evolution and Room-Temperature Mechanical Properties of Novel Fe66-x CrNiB (x) Si (x=0, 0.25, 0.50 and 0.75 Wt Pct) Advanced High-Strength Steels
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Effect of Boron Addition on Microstructural Evolution and Room-Temperature Mechanical Properties of Novel Fe66-x CrNiB (x) Si (x=0, 0.25, 0.50 and 0.75 Wt Pct) Advanced High-Strength Steels

机译:新型Fe66-X CRNIB(X)Si(X = 0,0.25,0.50和0.75WT PCT)先进的高强度钢(X = 0,0.25,0.50和0.75 WT PCT)高强度钢的微观结构演化和室温机械性能的影响

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In this study, the Vickers hardnesses and room-temperature uniaxial tensile behaviors of four Fe66-x CrNiB (x) Si (x = 0 (0B), 0.25 (25B), 0.50 (50B), and 0.75 (75B) wt pct) advanced high-strength steels (AHSSs) in the as-hot-rolled and heat-treated (1373 K (1100 A degrees C)/2 h + 973 K (700 A degrees C)/20 min) conditions were investigated. Microstructural evolution after solidification, hot rolling, heat treatment, and uniaxial tensile tests of 0B, 25B, 50B, and 75B AHSSs was also characterized using field emission gun scanning electron microscopy and X-ray diffraction. The tensile behaviors of the 0B, 25B, 50B, and 75B AHSSs were manifested by an excellent combination of strength and ductility over 34.7 and 47.1 GPa pct, 36.9 and 42.3 GPa pct, 45.9 and 46.4 GPa pct, and 11.9 and 47.8 GPa pct, respectively, arising from microband-induced plasticity in the 0B, 50B, and 75B AHSSs and transformation-induced plasticity in the 25B specimens. All specimens in the as-hot-rolled and heat-treated states showed an austenitic matrix grain. Adding boron to the base alloy (0B) resulted in grain refinement, M2B dispersion, precipitation hardening, and solid solution strengthening, which led to an increase in strength. The results of the present work show promise for automotive applications that require excellent properties and reduced specific weight.
机译:在这项研究中,Vickers硬度和室温单轴拉伸行为的四种Fe66-x CRNIB(x)Si(x = 0(0b),0.25(25b),0.50(50b)和0.75(75b)wt pct)调查了先进的高强度钢(AHSS)在热轧和热处理(1373K(1100℃)/ 2 H + 973k(700℃)/ 20分钟)条件下进行研究。使用现场发射枪扫描电子显微镜和X射线衍射,凝固后的微观结构速度,热轧,热处理和单轴拉伸试验也表征了40b,25b,50b和75b Ahsss。 0b,25b,50b和75b Ahss的拉伸行为通过34.7和47.1GPa PCT,36.9和42.3GPa PCT,45.9和46.4GPa PCT,11.9和47.8GPA PCT,表现出优异的强度和延展性的优异的强度和延展性的优异组合。分别由Microband诱导的0b,50b和75b AHSS的可塑性产生和25b标本中的转化诱导的可塑性。所有在热轧和热处理状态中的所有标本都显示出奥氏体基质晶粒。向基础合金(0B)中加入硼导致晶粒细化,M2B分散体,沉淀硬化和固体溶液强化,其导致强度的增加。目前工作的结果显示了需要优异性质和特定重量的汽车应用的承诺。

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