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Formation of Al3Ti/Mg composite by powder metallurgy of Mg–Al–Ti system

机译:Mg-Al-Ti体系粉末冶金形成Al3Ti / Mg复合材料

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摘要

An in situ titanium trialuminide (Al3Ti)-particle-reinforced magnesium matrix composite has been successfully fabricated by the powder metallurgy of a Mg–Al–Ti system. The reaction processes and formation mechanism for synthesizing the composite were studied by differential scanning calorimetry (DSC), x-ray diffractometry (XRD), scanning electron microscopy (SEM) and energy-dispersive x-ray spectroscopy (EDS). Al3Ti particles are found to be synthesized in situ in the Mg alloy matrix. During the reaction sintering of the Mg–Al–Ti system, Al3Ti particles are formed through the reaction of liquid Al with as-dissolved Ti around the Ti particles. The formed intermetallic particles accumulate at the original sites of the Ti particles. As sintering time increases, the accumulated intermetallic particles disperse and reach a relatively homogeneous distribution in the matrix. It is found that the reaction process of the Mg–Al–Ti system is almost the same as that of the Al–Ti system. Mg also acts as a catalytic agent and a diluent in the reactions and shifts the reactions of Al and Ti to lower temperatures. An additional amount of Al is required for eliminating residual Ti and solid-solution strengthening of the Mg matrix.
机译:通过镁-铝-钛系统的粉末冶金已成功地制备了原位三聚体钛(Al3Ti)-颗粒增强的镁基复合材料。通过差示扫描量热法(DSC),X射线衍射法(XRD),扫描电子显微镜(SEM)和能量色散X射线光谱法(EDS)研究了合成复合物的反应过程和形成机理。发现在Mg合金基体中原位合成了Al3Ti颗粒。在Mg-Al-Ti系统的反应烧结过程中,Al3Ti颗粒是通过液态Al与Ti颗粒周围溶解的Ti反应形成的。形成的金属间化合物颗粒堆积在Ti颗粒的原始位置。随着烧结时间的增加,积累的金属间颗粒分散并在基体中达到相对均匀的分布。结果发现,Mg-Al-Ti系统的反应过程与Al-Ti系统的反应过程几乎相同。镁在反应中也起催化剂和稀释剂的作用,将铝和钛的反应转变为较低的温度。需要额外量的Al以消除残留的Ti和Mg基体的固溶强化。

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