首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Some Studies on the Thermal-Expansion Behavior of C-Fiber, SiC_P, and In-Situ Mg_2Si-Reinforced AZ31 Mg Alloy-Based Hybrid Composites
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Some Studies on the Thermal-Expansion Behavior of C-Fiber, SiC_P, and In-Situ Mg_2Si-Reinforced AZ31 Mg Alloy-Based Hybrid Composites

机译:C纤维,SiC_P和原位Mg_2Si增强AZ31镁合金基杂化复合材料的热膨胀行为研究

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摘要

Magnesium alloy-based hybrid composites with carbon-fiber, SiC_p, and in-situ Mg_2Si reinforcements have been prepared by the squeeze-infiltration technique. The results of the studies done on the measurement of the coefficient of thermal expansion after thermal cycling of these composites show that the thermal cycling initially leads to rapid linear expansion of the composite. However, the expansion becomes stabilized after a few cycles, pointing toward formation of the stable interfaces due to the formation of stable precipitates. The model for the growth kinetics of these precipitates at the interface shows a rapid initial growth of the precipitates with the number of thermal cycles, which becomes saturated after a few thermal cycles. The thermal treatment of the composite lowers the coefficient of linear thermal expansion, which can be explained on the basis of further stabilization of the interfaces after the thermal treatment.
机译:通过挤压-浸渗技术制备了具有碳纤维,SiC_p和原位Mg_2Si增强材料的镁合金基杂化复合材料。对这些复合材料热循环后的热膨胀系数进行测量的研究结果表明,热循环最初会导致复合材料快速线性膨胀。然而,在几个循环后,膨胀变得稳定,由于形成了稳定的沉淀物,从而导致形成了稳定的界面。这些沉淀物在界面处的生长动力学模型表明,随着热循环次数的增加,沉淀物的初始生长迅速,经过几次热循环后达到饱和。复合材料的热处理降低了线性热膨胀系数,这可以根据热处理后界面的进一步稳定来解释。

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