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Coupling of acoustic cavitation with DEM-basedudparticle solvers for modeling de-agglomerationudof particle clusters in liquid metals

机译:空化与基于DEM的 ud的耦合用于解团聚的粒子求解器 ud液态金属中的粒子团簇

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摘要

The aerospace and automotive industries are seeking advanced materials with low weight yet high strength and durability. Aluminum and magnesium-based metal matrix composites with ceramic micro- and nano-reinforcements promise the desirable properties. However, larger surface-area-to-volume ratio in micro- and especially nanoparticles gives rise to van der Waals and adhesion forces that cause the particles to agglomerate in clusters. Such clusters lead to adverse effects on final properties, no longer acting as dislocation anchors but instead becoming defects. Also, agglomeration causes the particle distribution to become uneven, leading to inconsistent properties. To break up clusters, ultrasonic processing may be used via an immersed sonotrode, or alternatively via electromagnetic vibration. This paper combines a fundamental study of acoustic cavitation in liquid aluminum with a study of the interaction forces causing particles to agglomerate, as well as mechanisms of cluster breakup. A non-linear acoustic cavitation model utilizing pressure waves produced by an immersed horn is presented, and then applied to cavitation in liquid aluminum. Physical quantities related to fluid flow and quantities specific to the cavitation solver are passed to a discrete element method particles model. The coupled system is then used for a detailed study of clusters’ breakup by cavitation.
机译:航空航天和汽车行业正在寻求重量轻,强度高且耐用的先进材料。具有陶瓷微增强和纳米增强的铝和镁基金属基复合材料有望实现理想的性能。然而,在微米颗粒中,特别是在纳米颗粒中,较大的表面积/体积比会引起范德华力和粘附力,从而导致颗粒聚集成团。这样的簇对最终性能产生不利影响,不再充当位错锚,而变成缺陷。而且,附聚导致颗粒分布变得不均匀,从而导致性能不一致。为了分解团簇,可以通过浸没的超声波发生器或通过电磁振动来使用超声处理。本文结合了液态铝中声空化的基础研究与导致颗粒团聚的相互作用力以及团簇破裂的机理的研究。提出了利用浸入式喇叭产生的压力波的非线性声空化模型,然后将其应用于液态铝中的空化。与流体流动相关的物理量和对空化求解器特定的量被传递到离散元素方法粒子模型。然后,将耦合系统用于通过气穴作用对星团破裂的详细研究。

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