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Effects of microstructure and heat treatment on mechanical properties and corrosion behavior of powder metallurgy derived Fe-30Mn alloy

机译:显微组织和热处理对粉末冶金衍生的Fe-30Mn合金力学性能和腐蚀行为的影响

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摘要

Microstructures, mechanical properties and corrosion rates (CR) of powder metallurgy derived Fe-Mn alloys have been investigated with respect to the particle size of the iron (Fe) powder and the extent of manganese (Mn) diffusion and alloying during sintering. By applying different heat treatments on Fe-30wt%Mn alloy, a phase transformation (γ → e) for this composition and its influence on mechanical and corrosion properties have been studied. X-ray diffraction (XRD) and Transmission Electron Microscopy (TEM) have been conducted to characterize the transformation and identify the austenite (y) and epsilon martensite (e) phases in the system. Microstructures and tensile fracture surfaces were examined by Scanning Electron Microscope (SEM). The results show that the Fe particle size affects the overall Mn alloying significantly, ie., coarse Fe particles (30-200 um) result in Fe-Mn alloys with σ_y = 48.2 MPa, σ_u = 73.6 MPa, fracture strain of 2.42% and CR = 1.36 mmpy, while ultrafine particle size (< 44 μm) leads to σ_y = 134.2 MPa,σ_u = 215.8 MPa, fracture strain of 10.91% and CR = 0.29 mmpy. Heat treatments and formation of e martensite have shown minor effect on tensile properties, but increased hardness and corrosion rate noticeably.
机译:已经研究了粉末冶金衍生的Fe-Mn合金的微观结构,力学性能和腐蚀速率(CR),涉及铁(Fe)粉末的粒度以及烧结过程中锰(Mn)扩散和合金化的程度。通过对Fe-30wt%Mn合金进行不同的热处理,研究了该成分的相变(γ→e)及其对机械性能和腐蚀性能的影响。已经进行了X射线衍射(XRD)和透射电子显微镜(TEM)来表征转变并鉴定系统中的奥氏体(y)和ε马氏体(e)相。通过扫描电子显微镜(SEM)检查微观结构和拉伸断裂表面。结果表明,Fe颗粒尺寸对整个Mn合金化有显着影响,即,粗大的Fe颗粒(30-200 um)会导致σ_y= 48.2 MPa,σ_u= 73.6 MPa,断裂应变为2.42%的Fe-Mn合金。 CR = 1.36 mmpy,而超细粒度(<44μm)导致σ_y= 134.2 MPa,σ_u= 215.8 MPa,断裂应变为10.91%和CR = 0.29 mmpy。热处理和马氏体的形成对拉伸性能影响不大,但硬度和腐蚀速率显着提高。

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