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Formation of large grains by epitaxial and abnormal growth at the surface of pulsed electron beam treated metallic samples

机译:在脉冲电子束处理的金属样品表面通过外延生长和异常生长形成大晶粒

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摘要

The aim of the present work was to clarify that the rapid solidification process involved during surface pulsed beam treatment does not necessarily leads to the formation of nano or ultrafine grains. To demonstrate this, two types of metallic materials (a slightly deformed 2024 aluminum alloy and nickel based single grain superalloys) have been irradiated 15 times by high current pulsed electron beam. Epitaxial growth was triggered during the re-solidification of the superalloys, leading to the formation of a deformed single grain. Thanks to the repeated combinations of epitaxial growth and solid state secondary recrystallization, the pulsed electron beam treatment has led to the formation of large (millimetric) grains, that were also 4 to 5 times thicker than the depth of the melted zone, at the surface of the aluminum alloy. (C) 2018 Elsevier Ltd. All rights reserved.
机译:本工作的目的是阐明表面脉冲束处理过程中涉及的快速凝固过程并不一定导致纳米或超细晶粒的形成。为了证明这一点,两种类型的金属材料(略微变形的2024铝合金和镍基单晶高温合金)已被大电流脉冲电子束辐照了15次。在超合金的重新凝固过程中,外延生长被触发,导致变形的单晶粒的形成。由于外延生长和固态二次再结晶的反复结合,脉冲电子束处理已导致在表面形成大的(微米级)晶粒,其厚度也比熔化区的深度厚4至5倍。铝合金。 (C)2018 Elsevier Ltd.保留所有权利。

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