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Creep Behavior Of In Situ Ticp/2618 Aluminum Matrix Composite

机译:原位Ticp / 2618铝基复合材料的蠕变行为

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The creep behavior of 2618 aluminum alloy and in situ TiCp/2618 aluminum composites (with 15% and 20% volume fraction of TiC particles, respectively) was investigated under a condition of constant com-pressive stress at 523, 573 and 623 K, respectively. The results showed that both the stress exponent and the apparent activation energy of the composite were higher than these of 2618 aluminum alloy, indicating that the existence of TiC particles significantly improved the high-temperature creep property of 2618 aluminum alloy. Both the calculation based on the Orowan dislocation model through the introduction of the threshold stress concept and the normalization of the creep data showed that the high-temperature creep behavior of the composites could be explained by the dislocation climb (lattice diffusion) mechanism.
机译:在恒定压缩应力分别为523、573和623 K的条件下,研究了2618铝合金和原位TiCp / 2618铝复合材料(分别具有15%和20%的体积分数的TiC颗粒)的蠕变行为。 。结果表明,复合材料的应力指数和表观活化能均高于2618铝合金,表明TiC颗粒的存在明显改善了2618铝合金的高温蠕变性能。通过引入阈值应力概念基于Orowan位错模型进行的计算以及对蠕变数据的归一化都表明,复合材料的高温蠕变行为可以用位错爬升(晶格扩散)机制来解释。

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