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Production and Characterization of Fully Dense Hydrogenatedγ-TiAl by Blended Elemental Approach

机译:混合元素方法的完全致密氢化γ型γ的生产与表征

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Fully dense nanocrystallineγ-TiAl alloys were produced by mechanical alloying (MA) of elemental titanium and aluminum powders in a high-energy ball mill for sixteen hours followed by hot isostatic pressing (HIP'ing) at 850°C or 1050°C and a 207 MPa pressure. Some amount of titanium powder was replaced with titanium hydride to obtain the alloy with 0 and 20 at.% hydrogen. After HIP'ing hydrogen was removed by vacuum annealing. Scanning electron microscopy (SEM) was used to study the powder morphologies before and after MA. Phase and microstructural analyses were carried out using X-ray diffraction (XRD) and transmission electron microscopy (TEM) techniques. Differential thermal analysis (DTA) was used in conjunction with XRD to determine phase transformations in the compacted materials on heating. Microhardness of the compacts was also determined. The combined MA'ing and HIP'ing process allowed production of a hydrogenated and nanocrystallineγ-TiAl alloy that generally has very low hydrogen solubility.
机译:通过在高能球磨机中的元素钛和铝粉末的机械合金(MA)产生完全致密的纳米晶γ-Tial合金,其在高能球磨机中为16小时,然后在850℃或1050°C和A中进行热等静压(嘻哈) 207 MPa压力。用氢化钛代替一定量的钛粉,得到0和20.%氢的合金。通过真空退火除去臀部氢后。扫描电子显微镜(SEM)用于研究MA之前和之后的粉末形态。使用X射线衍射(XRD)和透射电子显微镜(TEM)技术进行相位和微观结构分析。差分热分析(DTA)与XRD结合使用,以确定加热材料上的压实材料中的相变。还确定了块的微硬度。组合的MA'ing和Hip'ing工艺允许生产氢化和纳米晶γ-Tial合金,其通常具有非常低的氢溶解度。

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