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DEVELOPMENT OF NEW AL-CU BASED ALLOYS AIMED AT IMPROVING THE MACHINABILITY OF AUTOMOTIVE CASTINGS

机译:旨在改善汽车铸件可加工性的新型基于铝铜的合金的开发

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This paper presents the first part of a study aimed at improving the machinability of a new Al-Cu based alloy containing very low silicon content, and intended for automotive applications. The results reported here focus on the development of the tensile properties of the alloy. This was achieved through the improvement of both casting and mechanical properties using melt treatments, alloy element additions, and heat treatment techniques. Various alloys were prepared to investigate the effects of Sr, TiB{sub}2, Fe, Mn, Ag, Sn and Zr additions on the tensile properties in the T6-and T7-tempered conditions, the intent being to use the data obtained to select the best alloy candidates for machinability studies. The results show that the T6 treatment provides the best tensile properties. Due to the low Si content, the effect of Sr modification on the tensile properties is not pronounced. Grain refining of the melt using Al-5%Ti-l%B master alloy appreciably increases the tensile strength and ductility. Excess amounts of Fe and Mn decrease the tensile properties, particularly the ductility, by increasing the total amount of Fe-containing intermetallic phases. The addition of silver was found to improve the tensile properties and stimulate ageing. The addition of tin significantly decreases the tensile properties due to its melting during solution heat treatment. The addition of zirconium, which acts as grain refiner and forms Al{sub}3Zr dispersoids, improves the tensile properties of the Sn-containing alloys.
机译:本文介绍了研究的第一部分,旨在提高含硅量极低的新型Al-Cu基合金的可切削性,并将其用于汽车应用。这里报道的结果集中在合金拉伸性能的发展上。这是通过使用熔体处理,添加合金元素和热处理技术改善铸造和机械性能来实现的。制备了各种合金以研究Sr,TiB {sub} 2,Fe,Mn,Ag,Sn和Zr的添加对T6和T7回火条件下拉伸性能的影响,目的是使用获得的数据选择可加工性研究的最佳合金候选者。结果表明,T6处理可提供最佳的拉伸性能。由于低Si含量,Sr改性对拉伸性能的影响并不明显。使用Al-5%Ti-1%B中间合金对熔体进行晶粒细化可显着提高抗拉强度和延展性。通过增加含铁金属间相的总量,过量的铁和锰会降低拉伸性能,特别是延展性。发现添加银可改善拉伸性能并促进老化。锡的添加由于其在固溶热处理期间的熔化而显着降低了拉伸性能。用作晶粒细化剂并形成Al {sub} 3Zr弥散体的锆的添加改善了含Sn合金的拉伸性能。

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