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Effect of ultrasonic cavitation on the wetting and reaction of Al-Ti/C interface

机译:超声波空穴对Al-Ti / C界面润湿和反应的影响

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Al-Ti-C alloy is a kind of fine refinement agent. However, the wetting of Al/C interface and TiC synthesis are the key technical problems to be solved in the preparation of Al-Ti-C grain refinement. In this paper, the acoustic cavitation effect was used to improve the wettability of Al-Ti/C interface, and improve the thermodynamic conditions of reaction, and thus the Al-Ti-C grain refinement agent was successfully prepared. The wetting properties of Al-Ti/C interface under different conditions were obtained. The results show that the acoustic cavitation effect significantly influences the wetting process. When the sound intensity is greater than the threshold value, the acoustic cavitation effect produces, and then the complete wetting of Al-Ti/C interface can be realized. At the same time, the high temperature effect of the cavitation also prevents the formation of harmful A14C3 compound, and changes the way of forming TiC compound which is different from the conventional reaction, and enhances the thermodynamics reactivity of the system to promote the TiC synthesis.
机译:Al-Ti-C合金是一种精细细化剂。然而,Al / C接口和TiC合成的润湿是在制备Al-Ti-C晶粒细化方面待解决的关键技术问题。在本文中,使用声学效果来改善Al-Ti / C界面的润湿性,改善反应热力学条件,因此成功制备了Al-Ti-C晶粒细化剂。获得了不同条件下Al-Ti / C界面的润湿性质。结果表明,声学空化效果显着影响润湿过程。当声强度大于阈值时,声学效果产生,然后可以实现Al-Ti / C接口的完全润湿。同时,空化的高温效应也防止了有害的A14C3化合物的形成,并改变形成不同于常规反应的TIC化合物的方式,并增强了系统的热力学反应性,以促进TIC合成。

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