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Ultrasonic treatment: a clean technology that supports sustainability in casting processes

机译:超声波处理:一种支持铸造过程可持续性的清洁技术

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The casting process is one of the most important steps in the production and supply chain of metallic components. Certain aspects, such as a clean melt, a finely clustered microstructure, and homogeneous solidification, are the basic requirements for making high-quality components and therefore influence all subsequent production stages. Current procedures to fulfill these requirements are the use of additional chemical substrates and stirring units, as well as energy-intensive technologies for cooling and tempering the molds. The goals of this work can be summarized as the development and investigation of a new ultrasonic treatment (UST) applied during the solidification of the aluminum casting alloy A356. The main idea is to expand the well-known physical effects of UST by exploiting the possibility of influencing microstructure formation during solidification. From the viewpoint of industrial applicability, the contribution of this work is the presentation of a new simulation tool that allows for making comprehensive predictions of UST processes. The presented results confirm the huge potential of the proposed treatment for increasing strength, reducing wall thicknesses, and saving valuable resources, such as materials and energy.
机译:铸造过程是在金属部件的生产和供应链中最重要的步骤之一。某些方面中,如干净的熔液,细群集的微观结构,且均匀的固化,可用于制备高品质的部件,以此来影响所有后续的生产阶段的基本要求。当前程序,以满足这些要求使用另外的化学基质和搅拌单元,以及用于冷却和回火模具能源密集型技术。这项工作的目标可以概括为发展和新的超声处理(UST)的铸造铝合金A356的凝固过程中应用的研究。其主要思想是通过利用凝固过程中影响微结构形成的可能性扩大UST的公知的物理效应。从工业应用的角度来看,这项工作的贡献是一种新的模拟工具,允许UST制造工艺的全面预测的呈现。所提出的结果证实提高强度,减少壁厚,并节省了宝贵的资源,如材料和能源所建议治疗的巨大潜力。

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