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Synthesis Mechanism of an Al-Ti-C Grain Refiner Master Alloy Prepared by a New Method

机译:新方法制备的Al-Ti-C晶粒细化剂中间合金的合成机理

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The mechanisms of in-situ synthesis of an Al-Ti-C grain-refiner master alloy, prepared by adding a powder mixture of potassium titanium fluoride and carbon into an aluminum melt, have been systematically studied. It was found that vigorous reactions occurred at the initial stage of reaction and then slowed down. After about 20 minutes, the reactions, which led the formation of blocky titanium aluminides and submicron titanium carbides in the aluminum matrix, appeared to reach completion. Potassium titanium fluoride reacted with aluminum and carbon at 724 deg C and 736 deg C, respectively, resulting in the formation of titanium aluminides and titanium carbides in the aluminum matrix as well as in the formation of a low-melting-point slag of binary potassium aluminofluorides. The reaction between potassium titanium fluoride and carbon is believed to be the predominant mechanism in the synthesis of TiC by this method.
机译:已经系统地研究了通过将氟化钛钛和碳的粉末混合物添加到铝熔体中而制备的Al-Ti-C晶粒细化剂中间合金的原位合成机理。发现剧烈的反应在反应的初始阶段发生,然后减慢。大约20分钟后,导致铝基质中形成块状铝化钛和亚微米级碳化钛的反应似乎已完成。氟化钛钛钾分别在724℃和736℃下与铝和碳反应,导致铝基质中形成铝化钛和碳化钛,以及二元钾的低熔点炉渣形成氟化铝。氟化钾钛和碳之间的反应被认为是通过该方法合成TiC的主要机理。

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