Proposed Solution for Random Characteristics of Aluminium Alloy Wire Rods Due to the Natural Aging

Claudio Bunte, Moisés Glassel, Carlos Medina, Diego Zalcman
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引用次数: 7

Abstract

In the last 50 years in the worldwide market for power transmission cables, there has been a tendency to replace aluminium cables electrical grade (EC) with steel cables by fully aluminium alloy (AAAC). The advantage in using cable AAAC is mainly economic (least amount of support structures and maintenance), addition to the elimination of the problems of galvanic corrosion and improved abrasion resistance. In order to obtain better mechanical properties, respect to the pure aluminium, aluminium alloyed with magnesium and silicon (AA6XXX series) is used, which by a combination of cold working and heat treatment allows obtaining greater mechanical strength without affecting too much the electrical conductivity. In this development it has worked with AA6101/6101 M alloy. The manufacturing of aluminium alloy wire rods for such applications, using the conventional process Properzi, requires heat treatment of solubilized, continuous or discontinuous (batch). During the waiting time of two months or more, the wire coils are exposed to natural aging at room temperature, entering into the wiredrawing machines with different mechanical properties. The wires obtained by the traditional method of manufacture in Argentina, through the wiredrawing, result in significantly higher mechanical properties, not complying with the standards. Furthermore many breaks occur mainly when a high tensile strength wire is processed for wire 2 mm in diameter or less. In the proposed method, a part of the initial wiredrawing is replaced by cold rolling and a subsequent partial aging. The results obtained in this study allow us to conclude that in the proposed process better properties and mechanical integrity are achieved than the traditional process, maintaining the electrical conductivity.

铝合金线材自然老化随机特性的解决方案
在过去的50年里,在全球电力传输电缆市场上,有一种趋势是用全铝合金(AAAC)钢电缆取代电气级(EC)铝电缆。除了消除电偶腐蚀问题和提高耐磨性外,使用电缆AAAC的优点主要是经济(最少的支撑结构和维护)。为了获得更好的机械性能,相对于纯铝,采用镁硅铝合金(AA6XXX系列),通过冷加工和热处理相结合,可以获得更高的机械强度,而不会影响太多的导电性。在此开发中,它与AA6101/6101 M合金一起工作。制造用于此类应用的铝合金线材,采用常规工艺Properzi,需要溶化、连续或不连续(批量)热处理。在两个月以上的等待时间中,线圈在室温下自然老化,进入具有不同力学性能的拉丝机。阿根廷传统的制造方法,通过拉丝得到的电线,其机械性能明显较高,不符合标准。此外,许多断裂主要发生在加工直径为2mm或更小的高抗拉强度钢丝时。在所提出的方法中,用冷轧和随后的部分时效取代部分初始拉丝。本研究获得的结果使我们得出结论,与传统工艺相比,在保持导电性的情况下,所提出的工艺具有更好的性能和机械完整性。
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