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Effect of Second Phase Particles on Grain Growth for Nanocrystalline AZ31 Mg Alloy by Phase Field Methods

机译:第二相颗粒对纳米晶AZ31mg合金籽粒生长的影响

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The grain growth of nanocrystalline AZ31 magnesium alloy containing spherical particles with different sizes is simulated by phase field methods. It is shown that the role of pinning effect of the second phase particles during grain growth is interesting. There is a critical particle size to affect the grain growth in nanostructure. If the size of particles is lower than the critical value, the effect of pinning for grain growth will be increased with further decreasing the size. If the size is larger than the critical value, the particles nearly have no pinning effects. The critical value is 200 nm when the content of particles is 10%. It is found that the grain growth exponents in kinetic equation decrease when the sizes of particles increase in nanostructure with the same volume fraction of the particles, and the pinning effect of particles on the grain growth is decreased as well.
机译:通过相场方法模拟含有不同尺寸的球形颗粒的纳米晶AZ31镁合金的晶粒生长。结果表明,谷物生长期间第二相颗粒的钉扎效果的作用是有趣的。存在临界粒度以影响纳米结构的晶粒生长。如果粒子的尺寸低于临界值,则捕捉晶粒生长的效果将进一步降低尺寸。如果尺寸大于临界值,则粒子几乎没有钉效效果。当粒子的含量为10%时,临界值为200nm。发现当纳米结构的颗粒增加颗粒的颗粒的尺寸增加时,动力学方程中的晶粒生长指数降低,并且颗粒对晶粒生长的钉效效果也降低。

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