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首页> 外文期刊>CERAMICS INTERNATIONAL >Effect of sintering temperature on the thermal expansion behavior of ZrMgMo3O12p/2024Al composite
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Effect of sintering temperature on the thermal expansion behavior of ZrMgMo3O12p/2024Al composite

机译:烧结温度对ZRMGMO3O12P / 2024AL复合材料热膨胀行为的影响

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摘要

A 2024Al metal matrix composite with 10 vol% negative expansion ceramic ZrMgMo3O12 was fabricated by vacuum hot pressing, and the influence of sintering temperature on the microstructure and thermal expansion coefficient (CTE) of alloys was investigated. Experimental results showed that all ZrMgMo3O12p/2024Al composites sintered at 500-530 degrees C had a similar reticular structure and exhibited different linear expansion coefficients at 40-150 degrees C and 150-300 degrees C. The addition of 10 vol% ZrMgMo3O12 decreased the CTEs of 2024Al by similar to 16% at 40-150 degrees C and by similar to 7% at 150-300 degrees C. This addition also increased the hardness of 2024Al by similar to 23%. The density of the composites and the content of Al2Cu in ZrMgMo3O12p/2024Al increased as the sintering temperature increased. The CTEs of the composites decreased, whereas hardness increased. Thermal cycling from 40 degrees C to 300 degrees C caused the CTEs of the composites to decrease gradually and reach a stable value after seven cycles. The lowest CTEs of 15.4 x 10(-6) degrees C-1 at 40-150 degrees C and 20.1 x 10(-6) degrees C-1 at 150-300 degrees C were obtained after 10 thermal cycles and were reduced by similar to 32% and similar to 17%, respectively, compared with the CTE of the 2024Al. Among the current reinforcements, ZrMgMo3O12 negative expansion ceramics showed the highest efficiency to decrease the CTE of Al matrix composites.
机译:通过真空热压制造具有10Vol%负膨胀陶瓷ZrmgmO3O12的2024al金属基质复合材料,研究了烧结温度对合金微观结构和热膨胀系数(CTE)的影响。实验结果表明,在500-530℃下烧结的所有ZrmGMO3O12P / 2024A1复合材料具有相似的网状结构,并在40-150℃和150-300摄氏度下表现出不同的线性膨胀系数。添加10Vol%ZrmgMO3O12降低了CTE 2024AL在40-150℃下相似,在150-300℃下相似。此添加也将2024al的硬度增加到23%。随着烧结温度的增加,复合材料的密度和Al2Cu的含量增加,随着烧结温度的增加,增加。复合材料的CTE降低,而硬度增加。从40度C至300摄氏度的热循环导致复合材料的CTE逐渐降低并在七个循环后达到稳定值。在10个热循环之后获得150-150℃和20.1×10(-6)C-1的15.4×10(-6)℃C-1的最低CTE在150-300℃下获得,并通过相似降低与2024al的CTE相比,分别为32%且相似于17%。在该电流增强件中,Zrmgmo3O12负膨胀陶瓷显示出降低Al基质复合材料的CTE的最高效率。

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