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首页> 外文期刊>Metals and Materials International >Microstructure and refinement performance of Al-Ti-C master alloy: Effect of excess Ti on the growth and nucleating ability of TiC particles
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Microstructure and refinement performance of Al-Ti-C master alloy: Effect of excess Ti on the growth and nucleating ability of TiC particles

机译:Al-Ti-C master合金的组织和细化性能:过度Ti对TIC粒子生长和成核能力的影响

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摘要

Al-5Ti-0.2C, Al-0.8Ti-0.2C, Al-8Ti-2C, and Al-10Ti master alloys were prepared and used to investigate the influence of excess Ti on the growth of TiC particles and its ability to nucleate Al-grains. The results of a microstructure analysis of TiC-containing alloys and refined CPAl were interrelated to the results of a refinement test. It was found that the presence of excess Ti is essential at the stage of master alloy preparation, as it facilitates the growth and uniform distribution of TiC within the structure. In Al-5Ti-0.2C alloy containing excess Ti, carbide particles grow faster and to a higher extent (from 0.29 mu m to 0.44 mu m) compared to Al-0.8Ti-0.2C alloy produced without excess Ti (from 0.29 mu m to 0.32 mu m). The results support the "Ti-transition zone theory" as the mechanism of grain refinement by TiC-containing master alloys. The refinement performance of Al-5Ti-0.2C is superior compared to the one achieved by adding Al-8Ti-2C and Al-10Ti master alloys in corresponding concentrations. For the TiC particles to become favourable nucleating sites, they must undergo certain interaction with excess Ti at the stage of master alloy preparation.
机译:制备Al-5Ti-0.2C,Al-0.8Ti-0.2C,Al-8TI-2C和Al-10TI主合金,并用于研究过量Ti对TIC颗粒生长的影响及其对核心Al的能力-Grains。含有TiC合金的微观结构分析和精制计的结果与细化试验的结果相互关联。结果发现,在母合金制剂的阶段,过量Ti的存在是必不可少的,因为它促进了结构内Tic的生长和均匀分布。在含有过量Ti的Al-5ti-0.2C合金中,与没有过量Ti的Al-0.8Ti-0.2C合金相比,碳化物颗粒生长得更快,更高的程度(从0.29μm至0.44 mu m)(从0.29 mu m为0.29 m m m到0.32 mu m)。结果支持“TI-Transibition区理论”作为含有TiC母合金的晶粒细化机理。与通过在相应浓度中加入Al-8Ti-2C和Al-10Ti主合金的Al-8Ti-2C和Al-10Ti主合金的实施方式,Al-5Ti-0.2C的细化性能优异。对于TIC颗粒成为有利的成核位点,它们必须在母合金制剂的阶段进行与过量TI的某些相互作用。

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