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Predictions of Structure Breakdown, Buildup and Shear banding in Semisolid Suspensions

机译:半固体悬浮液的结构分解,堆积和剪切带预测

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When SSM material is subjected to a sudden transient the rate of buildup (aging) is negligible compared to the rate of breakdown (shear rejuvenation). While this is generally true, due to prolonged processing or the geometry the local shear rate in some regions may become equal or lower than the critical value, where aging becomes as important as shear rejuvenation. In this work we simulate in detail shear rejuvenation and aging in semisolid slurries. Using a standard thixotropic model used widely for modeling SSM suspensions but a novel computational method we reveal and confirm numerically for the first time shear banding. The phenomenon is found to be time dependent where the material first yields fully and then, after a certain time the yielded front retreats to form two distinct bands -one yielded and one unyielded. This phenomenon must be accounted for in the evaluation of the material constants since the time scale of the process is similar to the time scale of the phenomenon.
机译:当SSM材料经受突然的瞬变时,其堆积(老化)速率与击穿速率(剪切再生)相比可以忽略不计。尽管通常是这样,但由于加工时间或几何形状的延长,某些区域的局部剪切速率可能变得等于或低于临界值,在该临界值下,老化与剪切振兴同样重要。在这项工作中,我们详细模拟了半固态浆料中的剪切活化和老化。使用广泛用于SSM悬架建模的标准触变模型,但采用了一种新颖的计算方法,我们首次在数值上揭示并确定了剪切带。发现该现象与时间有关,在这种情况下,材料首先完全屈服,然后在一定时间后,屈服的前端退缩以形成两个不同的带-一个屈服且一个不屈服。由于过程的时间尺度与现象的时间尺度相似,因此在评估材料常数时必须考虑到这种现象。

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