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首页> 外文期刊>Archives of Metallurgy and Materials >EVALUATION OF SUSCEPTIBILITY TO HOT CRACKING OF MAGNESIUM ALLOY JOINTS IN VARIABLE STIFFNESS CONDITION
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EVALUATION OF SUSCEPTIBILITY TO HOT CRACKING OF MAGNESIUM ALLOY JOINTS IN VARIABLE STIFFNESS CONDITION

机译:变刚度条件下镁合金接头热裂敏感性的评估

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Magnesium alloys, due to their low density and advantageous resistance properties, are being increasingly used in automotive and aircraft industries. It is connected with the desire for vehicles mass lowering and fuel consumption decreasing. One of the development directions of magnesium alloys is the increase of creep resistance, which allows for usage at higher temperatures. The following property is possible to acquire thanks to alloy additions such as: rare-earth elements and zirconium. Almost 90% of used magnesium alloys are casting alloys: precision castings are most frequently used in automotive industry and gravity ones in aircraft industry. After the process of casting, some defects can be visible in the material, e.g. misruns or microshrinkages, but they are repaired with the use of overlay welding and other welding techniques. The main criteria of magnesium alloys weldability assessment is their susceptibility to hot cracking, which constitute the greatest difficulty during welding, and their overlay welding capacity. This paper presents the evaluation of the influence of technological factors on magnesium alloys susceptibility to hot cracking. For that purpose, several tests of joint welding in variable stiffness conditions (Houldcroft test) and metallographic examination had been made. The examination was carried out on three magnesium alloys suitable to work at elevated temperatures: ZRE1, WE43 and MSRB and, for comparison, on the most frequently used for gravity castings – AZ91 alloy, in cast state and for two alternatives of heat treatment.
机译:镁合金由于其低密度和有利的电阻特性,正越来越多地用于汽车和飞机工业。这与降低车辆质量和减少燃料消耗的期望有关。镁合金的发展方向之一是抗蠕变性的提高,这允许在更高的温度下使用。由于添加了诸如稀土元素和锆之类的合金,因此可以获得以下特性。几乎90%的用过的镁合金都是铸造合金:精密铸件最常用于汽车行业,而重力铸件最常用于飞机行业。铸造过程后,材料中可能会出现一些缺陷,例如失误或微缩,但可以使用堆焊和其他焊接技术进行修复。镁合金可焊性评估的主要标准是其对热裂纹的敏感性,这是焊接过程中的最大困难,以及它们的堆焊能力。本文对工艺因素对镁合金热裂敏感性的影响进行了评估。为此,已经进行了几种在变刚度条件下进行接头焊接的测试(Houldcroft测试)和金相检查。检验是在三种适合在高温下工作的镁合金上进行的:ZRE1,WE43和MSRB,作为比较,对重力铸造中最常用的镁合金– AZ91合金,铸造状态和两种热处理方案进行了测试。

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