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Microstructural Stress Concentration: An Important Role in Grain Refinement of Rheocasting Structure

机译:微结构应力集中:流变铸造结构的晶粒细化中的重要作用

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Though the mechanisms of dendrite fragmentation in agitated solidification are of great importance and have been investigated for many years, no accurate calculation of the stress fields of dendrites stirred in the metallic flow has been reported. In this study, the stress field and strain field of an aluminum dendrite model in moderate agitated fluid were calculated using the finite-element method. It was found that the stress concentrations at the roots of dendrite branches are so great that plastic deformation occurs when the fluid force is far from sufficient to bend the dendrite branches plastically. According to this calculation, a mechanism, detaching after fatigue erosion, was suggested. The new mechanism suggests that stress concentrations at the roots of dendrite branches create slip band intrusions and extrusions. These slip band intrusions and extrusions are thermally unstable and are soon remelted. If the erosion rate of the roots is sufficiently large, the roots will be thinned and dendrite branches will detach. Experiments on the effects of stirring intensity, cooling rate, and stirring time on the grain sizes of the A356 rheocasting structure, and reported high-temperature fatigue tests, coiToborate the effectiveness of the new mechanism.
机译:尽管枝晶在搅拌凝固过程中破碎的机理非常重要,并且已经研究了很多年,但是还没有关于在金属流中搅拌枝晶的应力场的准确计算的报道。在这项研究中,使用有限元方法计算了中度搅拌流体中铝枝晶模型的应力场和应变场。发现在树枝状树枝的根部的应力集中是如此之大,以至于当流体力远远不足以使树枝状树枝塑性弯曲时,发生塑性变形。根据该计算结果,提出了疲劳腐蚀后剥离的机理。新的机制表明,树枝状树枝根部的应力集中会产生滑移带侵入和挤压。这些滑带侵入和挤压是热不稳定的,并且很快被重熔。如果根部的侵蚀速率足够大,则根部将变薄并且枝晶分支将分离。进行了搅拌强度,冷却速率和搅拌时间对A356流变铸造结构晶粒尺寸的影响的实验,并报道了高温疲劳试验,从而证明了该新机理的有效性。

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