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Solidification Conditions for High-Strength Aluminum Alloy Ingots with Increased Transition Metal Content

机译:高强度铝合金锭的凝固条件,具有升高的过渡金属含量

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摘要

It is shown that during continuous casting of high-strength aluminum alloy ingots of industrial dimensions there is a possibility of increasing the zirconium content to 0.4% if the production methods provide suppression of stable Al3Zr. Melt temperature and time treatment makes it possible to prepare ingots of alloy 1973 without primary particles intermetallic with diameter of 97 mm containing 0.38% Zr and 178 mm in diameter containing 0.2% Zr. It is determined that the use of extra-furnace modification with addition of Al-5% Zr master alloy bar into the furnace tap-hole box and cavitation action of solidification in the molten pool of an ingot makes it possible to prepare ingots of alloy 01959 300 mm in diameter of guaranteed composition with alloying by zirconium for the lower limit of the technical specifications. It is shown that in spite of the presence within ingots of primary intermetallics the mechanical property level achieved complies with technical specifications for granule shape. Some increase (by 5-7% with respect to strength) of the properties of sections of granules is connected with an increase in fineness of all phases compared with a cast version.
机译:结果表明,如果生产方法提供稳定的Al3Zr,则在工业尺寸的高强度铝合金锭的连续铸造期间,有可能将锆含量增加到0.4%。熔融温度和时间处理使得可以在没有初级颗粒金属间金属间金属间金属间金属间金属金属颗粒的直径为含有0.38%Zr的直径为0.2%Zr的178mm的直径的初级颗粒金属间粒子。确定使用外炉改性以加入Al-5%Zr Master合金棒进入炉子孔箱中的熔池中的凝固作用,可以制备合金的锭01959 300毫米直径,保证组合物的合金化由锆的合金化用于技术规范的下限。结果表明,尽管存在主要金属间金属间金属间金属间金属间金属锭的存在,所以实现的机械性能水平符合颗粒形状的技术规范。与铸造版相比,颗粒部分的特性(相对于颗粒部分相对于强度)的一些增加(相对于强度)的增加是相连的。

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