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Preparation of Multilayered Ti-Al Alloys by Solid Reaction

机译:固相反应制备多层Ti-Al合金

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The multilayered materials with different combinations of Ti, Al and Ti-Al intermetallics were prepared by heat treatment and hot pressing (HP) with elemental foils. The microstructures and phase formation of the obtained samples were detected by scanning electron microscopy (SEM), electron probe microanalysis (EPMA), energy dispersive spectroscopy (EDS) and X-ray diffractometer (XRD). When the HP is applied under the melt point of aluminum, aluminum is the only diffusive element across the oxide films on the surface of the initial foils; however, some unusual TiAl_3 particles are found in the multilayered structure due to the broken of oxide films; after hot pressing for 4 hours, all the aluminum was consumed; many voids exist at the centerline of TiAl_3 layers, which are mainly caused by Kirkendall effect and the difference of molar volumes between reactants and products; before the aluminum is completely consumed, TiAl_3 is the only product in the solid reaction under the melting temperature of aluminum; however, other Ti-AI intermetallics like Ti_3Al and TiAl are formed in the updated temperature diffusion after aluminum is consumed.
机译:通过用元素箔的热处理和热压(HP)制备具有不同组合的具有不同组合的多层材料。通过扫描电子显微镜(SEM),电子探针微分析(EPMA),能量分散光谱(EPS)和X射线衍射仪(XRD)检测所得样品的微观结构和相形成。当在铝的熔体点施加HP时,铝是初始箔表面上氧化膜上的唯一扩散元件;然而,由于氧化膜的破碎,在多层结构中发现了一些不寻常的TiAl_3颗粒;热压4小时后,所有铝都被消耗;在TiAl_3层的中心线处存在许多空隙,主要由Kirkendall效应和反应物和产品之间的摩尔体积的差异;在完全消耗铝之前,TiAl_3是铝的熔化温度下固体反应中的唯一产品;然而,在铝被消耗之后,在更新的温度扩散中形成其他Ti-AI金属间金属间质。

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