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Resource recycling of superalloys and hydrometallurgical challenges

机译:高温合金的资源回收和湿法冶金挑战

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Superalloys are high melting temperature, excellent creep resistance, anti-corrosive, and oxidation resistant alloys; they are predominantly used in gas turbines of aircraft engines and power plants. Today, a series of superalloys is available according to their composition and applications. The tough nature of superalloys makes it difficult to recycle them after they are formed; this increases the demand and shortage of the energy-critical elements that are their raw materials and makes their processing one of the most demanding form of recycling today. A few processes are available, and some of these unique recycling systems are in use; however, a lack of data and/or information exists for two reasons: (i) scrap recycling is most frequently performed by superalloy manufacturers themselves (not always by the same unit) by recharging them into molten charges, and (ii) the recycler does not want to produce business for their rivals. This article presents an overview of the processes investigated to recycle superalloys, including the advantages and disadvantages of each. The available processes are not very technologically or economically feasible; therefore, further efforts are necessary to explore these processes and to make a value-added product by recycling superalloys rather than just re-melting them. Considering the continuously increasing number of alloyed elements in advanced superalloys, this paper also notes to the challenges associated with hydrometallurgical recycling of superalloys and the need for future studies on this topic.
机译:高温合金是高熔化温度,优异的抗蠕变性,抗腐蚀和抗氧化的合金;它们主要用于飞机发动机和发电厂的燃气轮机。如今,根据其成分和应用,可以得到一系列的超级合金。超级合金的坚韧特性使其在形成后难以回收。这增加了对作为其原材料的关键能源元素的需求和短缺,并使它们的加工成为当今最苛刻的回收形式之一。有一些过程可用,其中一些独特的回收系统正在使用中。但是,由于以下两个原因,缺乏数据和/或信息:(i)废料的回收利用最频繁的是由超级合金制造商本身(并非总是由同一单位)通过将其重新装入熔融料来进行的;以及(ii)回收商确实不想为自己的竞争对手做生意。本文概述了回收的高温合金所研究的方法,包括每种方法的优缺点。现有的工艺在技术或经济上都不是很可行。因此,有必要进一步努力探索这些过程,并通过回收超级合金而不是仅仅重新熔化它们来制造增值产品。考虑到高级超级合金中合金元素的数量不断增加,本文还指出了与超级合金的湿法冶金循环相关的挑战,并需要对该主题进行进一步的研究。

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