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Deformation behaviour of a new Magnesium ternary alloy

机译:新型三元合金的变形行为

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Magnesium based alloys are yet to fill a greater niche especially in the automotive and aeronautical industry. In fact, such alloys have a big weight saving potential, together with good damping characteristics. However, nowadays about 90% of Magnesium products are produced by casting, mainly using two alloy systems, namely Mg-Al-Zn (AZ91D) and Mg-Al (AM50, AM60). Now the emphasis, especially after having achieved considerable success in creep resistance and understanding of the deformation behaviour of Magnesium, has been shifted towards wrought alloys; AZ31, in this case, is the most popular. In this work a multi-element Magnesium alloy, developed to improve the deformation capacity of such a lightweight material, has been investigated and compared to a commercial AZ31B. The possibility of adopting such a multi-element Magnesium alloy for manufacturing components via unconventional sheet forming (such as superplastic forming, warm hydroforming, incremental forming) has been proved in the present work focusing the attention on the superplastic field. Free inflation tests were thus conducted at 450°C setting constant pressure to investigate the superplastic behaviour (in terms of dome height and strain rate sensitivity index) of both the multi-element Magnesium alloy (Mg-2Zn-Ce) and the commercial one (AZ3 1B). To enhance information on the thickness distribution and investigate the microstructure evolution, metallographic analyses on the samples used to carry out free inflation tests were also performed. The developed ternary alloy manifested quite a good deformation behaviour (high strain rate sensitivity index), even being tested in the as cast condition; in addition a limited grain coarsening was observed in the specimens after deformation.
机译:镁基合金尚未填补更大的利基,特别是在汽车和航空工业中。事实上,这种合金具有大量保速潜力,以及良好的阻尼特性。然而,如今,约90%的镁产品是通过铸造产生的,主要使用两个合金系统,即Mg-Al-Zn(AZ91D)和Mg-Al(AM50,AM60)。现在强调,特别是在抗蠕变抵抗和理解镁的变形行为方面取得了相当大的成功之后,已经向锻造合金转向; AZ31,在这种情况下,是最受欢迎的。在这项工作中,已经研究了一种多元素镁合金,以提高这种轻质材料的变形容量,并与商业AZ31B进行比较。通过在本作工作中被证明,通过非传统的片材形成(例如超塑性成形,温液,增量成型)采用这种多元素镁合金的可能性,这些作品将注意力集中在超塑场上。因此,在450℃设定恒定压力下进行自由膨胀试验,以研究多元素镁合金(MG-2ZN-CE)和商业一体( AZ3 1B)。为了增强关于厚度分布的信息并研究微观结构演化,还进行了用于进行自由膨胀试验的样品上的金相分析。培养的三元合金表现出相当良好的变形行为(高应变率灵敏度指数),甚至在铸造条件下进行测试;此外,在变形后在标本中观察到有限的晶粒粗化。

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