METHODS OF INTRODUCING ALLOYING ELEMENTS INTO LIQUID MAGNESIUM

D. Kapinos, B. Augustyn, M. Szymanek
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引用次数: 6

Abstract

In recent years, magnesium alloys have gained widespread popularity as construction materials. This is due to their low density, high strength properties, and advances in their production technology. Properties of magnesium alloys depend primarily on the type, quantity, and quality of elements present in their composition. It is therefore necessary to carry out research on the further optimisation of the production technology of these alloys. This article presents the results of studies carried out in order to determine the type, form, and parameters of the process of introducing selected alloying elements to magnesium in a manner which enables the manufacture of alloys with predetermined chemical composition. As part of the work, elements such as Al, Zn, Mn, Zr, Si, Cu, Ca, as well as rare earth elements (RE) were introduced into the liquid magnesium. The alloying elements were introduced into the melt at different temperatures in either a metallic form or as master alloys. While conducting studies, respective solubility graphs were plotted for the alloying elements showing the time taken for each element to dissolve to the required form at a specific temperature and concentration. The studies resulted in the development of several techniques of introducing selected alloying elements, which enabled the manufacture of various types of alloys.
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在液态镁中引入合金元素的方法
近年来,镁合金作为建筑材料得到了广泛的普及。这是由于它们的低密度、高强度特性和生产技术的进步。镁合金的性能主要取决于其成分中所含元素的种类、数量和质量。因此,有必要对这些合金的生产工艺进行进一步的优化研究。本文介绍了研究的结果,以确定将选定的合金元素引入镁的过程的类型、形式和参数,从而能够制造具有预定化学成分的合金。将Al、Zn、Mn、Zr、Si、Cu、Ca等元素以及稀土元素(RE)引入到液态镁中。合金元素在不同的温度下以金属形式或作为主合金引入熔体。在进行研究时,绘制了合金元素的溶解度图,显示了每种元素在特定温度和浓度下溶解成所需形式所需的时间。这些研究导致了几种引入选定合金元素的技术的发展,这使得制造各种类型的合金成为可能。
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