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Analysis of the 355 Aluminium Alloy Microstructure for Application in Thixoforming

机译:355铝合金在触变性成型中的组织分析

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The 355 aluminium alloy is known to have excellent thermodynamic characteristics that render it suitable as a raw material for rheocasting and thixoforming. However, besides the controllable transition from solid to liquid phase, the refined microstructure required in the semisolid range is one of the key factors with a strong influence on the rheology of the material. This paper intends to analyse the in situ behaviour of the microstructure, in terms of morphological change, using high-temperature laser scanning confocal microscopy. The 355 alloy was prepared via conventional casting, and refined with a 30-s exposition via ultrasonic melt treatment (UST - 20 Hz, 2 kW). The material was reheated up to the thixoforming target temperature of 595 °C at which it was maintained for 0, 30,60,90, and 120 s, after which all the samples were cooled in water. The samples subjected to UST prior to the heat treatment were more refined in terms of microstructural evolution; they exhibited reduction in grain size (~107 ± 16 μm), smallest primary phase particle size (~81 ± 7 μm), and high circularity shape factor (~0.59 ±0.19 μm). In situ observation methods were employed to analyse evolution mechanisms such as Ostwald ripening and coalescence.
机译:已知355铝合金具有出色的热力学特性,使其适合用作流延铸造和触变成型的原材料。但是,除了从固相到液相的可控转变外,半固体范围内所需的精细微观结构也是对材料流变学产生重大影响的关键因素之一。本文旨在使用高温激光扫描共聚焦显微镜从形态变化方面分析显微组织的原位行为。 355合金是通过常规铸造制备的,并通过超声熔融处理(UST-20 Hz,2 kW)以30秒的暴露时间进行精制。将该材料重新加热至触变性目标温度595°C,在该温度下保持0、30、60、90和120 s,然后将所有样品在水中冷却。在显微组织演变方面,在热处理之前经过UST的样品更加精细。它们具有减小的晶粒尺寸(〜107±16μm),最小的初级相粒径(〜81±7μm)和高的圆形度系数(〜0.59±0.19μm)。原位观察方法被用来分析演化机制,例如奥斯特瓦尔德成熟和聚结。

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