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Microstructural and Mechanical Properties of Binary Ti-Rich Fe–Ti Al-Rich Fe–Al and Ti–Al Alloys

机译:二元富钛铁钛富铝铁铝和钛铝合金的显微组织和力学性能

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摘要

Three series of binary, FeTi (Ti-rich), FeAl and TiAl (Al-rich) alloy samples were produced in an argon arc furnace. An annealing treatment of 72 h at 1000 °C was applied to the samples, giving rise to different equilibrium microstructures depending on chemical composition. Their mechanical properties were studied through the determination of elastic constants that measure the stiffness of the elaborated materials. Young’s modulus of the binary alloys was determined using Resonance Ultrasonic Vibration (RUV). The accuracy of this technique was demonstrated. A scanning electron microscope (SEM) with an energy dispersive spectrometer (EDS) and X-ray diffraction (XRD) made it possible to identify intermetallic compounds FeTi and Fe2Ti, FeAl and FeAl2, and TiAl and TiAl2 in respective systems Fe–Ti, Fe–Al, and Ti–Al. The link between their composition, microstructure, and elastic properties was established.
机译:在氩弧炉中生产了三组二元,FeTi(富钛),FeAl和TiAl(富铝)合金样品。将样品在1000°C下退火72 h,根据化学成分产生不同的平衡微观结构。通过确定可测量精细材料刚度的弹性常数来研究其机械性能。使用共振超声振动(RUV)确定二元合金的杨氏模量。证明了该技术的准确性。带有能谱仪(EDS)和X射线衍射仪(XRD)的扫描电子显微镜(SEM)使得鉴定金属间化合物FeTi和 Fe 2 Ti,FeAl和Fe <数学xmlns:mml =“ http://www.w3.org/1998/Math/MathML” id =“ mm2”溢出=“ scroll”> Al < / mi> 2 ,以及TiAl和Ti Al 2 在各自系统中-Ti,Fe-Al和Ti-Al。建立了它们的组成,微观结构和弹性之间的联系。

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