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Fabrication of the High-Entropy Alloys and Recent Research Trends: A Review

机译:高熵合金的制作和最近的研究趋势:综述

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High-entropy alloys (HEAs), which are defined as a single phase crystalline solid solution with the composition of each constituent element in the range of 5-35 at%, have been the subject of intensive study in the last decade. Most of the HEA research is focused on alloy design, microstructural characterization, and Mechanical testing, not manufacturing, processing, and industrialization, although the properties, microstructures, and performance are strongly dependent on processing. In this review article, we aim to describe the manufacturing processes applied to HEAs. The manufacturing process of HEAs can be classified into three main routes. First, liquid processing that includes arc melting, Bridgman solidification, atomization, and laser cladding is the most commonly used methods because the processing facilities are already widespread in many laboratory and the liquid processing can be easily scaled-up for commercialization. Second, mechanical alloying. i.e. powder metallurgy, is a process starting from a solid particle state and employing sintering procedures for bulk manufacturing. In particular, the mechanical alloying has been used for achieving super saturated solid solution which cannot be obtaiend using the conventional liquid prcesses. Third, the HEAs can be manufactured by mixing elements of the vapor state, which includes sputter deposition, atomic layer deposition, and vapor phase deposition. Explanation and comparison between various manufacturing methods of the HEAs are systematically described and demonstrated in this review.
机译:高熵合金(HEAS),其定义为单相结晶固体溶液,其中每个组成元素的组成在5-35at%的范围内,是过去十年的密集研究的主题。大多数HEA研究专注于合金设计,微观结构表征和机械测试,而不是制造,加工和工业化,尽管性能,微观结构和性能都强烈取决于加工。在本综述文章中,我们的目标是描述适用于HEA的制造过程。 HEA的制造过程可以分为三个主要路线。首先,包括电弧熔化的液体处理,Bridgman凝固,雾化和激光覆层是最常用的方法,因为加工设施在许多实验室中已经普及,并且液体处理可以很容易地扩大用于商业化。二,机械合金化。即粉末冶金,是从固体颗粒状态开始的过程,并采用散装制造烧结程序。特别地,机械合金化已被用于实现超饱和固溶体,其不能使用常规液体PRCesses脱离。第三,可以通过混合蒸汽状态的元件来制造HEA,其包括溅射沉积,原子层沉积和气相沉积。在本次审查中系统地描述和证明各种制造方法之间的解释和比较。

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