Investigation of the features of crystallization of granules of high-strength aluminum alloys of the Al-Zn-Mg-Cu system at ultra-high cooling rates

Q3 Materials Science
M. Zharov
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引用次数: 2

Abstract

The article presents the results of studies of the process of obtaining granular materials from high-strength aluminum alloys of the Al - Zn - Mg - Cu system by centrifugation of the melt with ultra-high cooling rates of granules. The concept of a «steam jacket» is introduced, namely, a steam layer that occurs between the granule body and the cooling liquid, which prevents the intensity of heat removal and is an obstacle to increasing the crystallization rate due to the lower thermal conductivity of water vapor. It is established that the formation of a vapor layer always occurs due to the heating of the cooling liquid in contact with the melt drop to boiling temperatures and the transition of the cooler from the liquid phase to steam. The technology of increasing the rate of crystallization of granules due to the constant removal of the vapor layer is proposed. The removal (knocking down) of the vapor shell that occurs around the drop occurs due to the high speed of the drop movement in the cooling medium. Fundamentally important in the industrial implementation of this technology is not so much the design of the device for obtaining pellets by centrifugation of the melt, namely, the high required rotation speed of the spraying crucible of the device under consideration. The results of experimental data are presented to determine the necessary rotation speed of the perforated cup, which ensures the creation of a sufficient initial velocity of the drop movement, leading to a constant churning of the «steam jacket». It is determined that an increase in the rates of heat removal from the crystallized granules and, as a result, an increase in the crystallization rate leads to an increase in the strength characteristics of granular aluminum alloys of the Al-Zn-Mg-Cu system. In particular, in the production of pressed semi-finished products from alloys of the Al-Zn-Mg-Cu system, such as B95, B96c. the increase in the strength characteristics of the material of the press products is up to 15 % compared to the same granular materials obtained by traditional methods with industrial crystallization rates of melt droplets. It is established that this method, based on the removal of the vapor layer around the formed granule, is the only possible one for further increasing the cooling rate and, as a result, the crystallization rate. Reducing the size of granules to the size of powders leads to serious technological problems in the further consolidation of granules and, in fact, is a dead end branch of the further development of granulation methods.
Al-Zn-Mg-Cu系高强度铝合金颗粒在超高速冷却下结晶特征的研究
本文介绍了用超高颗粒冷却率离心熔体从Al-Zn-Mg-Cu系高强度铝合金中获得颗粒材料的工艺研究结果。介绍了“蒸汽夹套”的概念,即出现在颗粒体和冷却液之间的蒸汽层,由于水蒸气的热导率较低,蒸汽层阻碍了散热强度,并阻碍了结晶速率的提高。已经确定,蒸汽层的形成总是由于与熔体液滴接触的冷却液加热到沸腾温度以及冷却器从液相转变为蒸汽而发生的。提出了通过不断去除蒸汽层来提高颗粒结晶速率的技术。由于液滴在冷却介质中的高速移动,液滴周围发生的蒸汽壳的去除(击倒)发生。在该技术的工业实施中,根本重要的不是用于通过熔体离心获得颗粒的装置的设计,即所考虑的装置的喷射坩埚的高所需旋转速度。实验数据的结果用于确定穿孔杯的必要转速,这确保了液滴运动产生足够的初始速度,从而导致“蒸汽夹套”的持续搅动。已经确定,从结晶颗粒中去除热量的速率的增加,并且因此结晶速率的增加导致Al-Zn-Mg-Cu系统的粒状铝合金的强度特性的增加。特别是在由Al-Zn-Mg-Cu系合金如B95、B96c生产压制半成品时。与通过具有熔融液滴的工业结晶速率的传统方法获得的相同颗粒材料相比,压制产品的材料的强度特性的增加高达15%。已经确定,这种基于去除所形成颗粒周围的蒸汽层的方法是进一步提高冷却速率并因此提高结晶速率的唯一可能的方法。将颗粒尺寸减小到粉末尺寸会导致颗粒进一步固结的严重技术问题,事实上,这是造粒方法进一步发展的一个死胡同。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
PNRPU Mechanics Bulletin
PNRPU Mechanics Bulletin Materials Science-Materials Science (miscellaneous)
CiteScore
1.10
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