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Titlebook: Magnesium Technology 2022; Petra Maier,Steven Barela,Neale R. Neelameggham Conference proceedings 2022 The Minerals, Metals & Materials So

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Unlocking the Strengthening Potential of Magnesium Alloys Using Deformation-Induced Clustering and Ping these metals has been remarkably different. While significant improvement has been achieved in developing high strength Al alloys, the anisotropic hexagonal crystal system and complex plasticity mechanisms have made the design of high strength Mg alloys a challenging exercise [.–.).
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Development of Magnesium–Lithium-Based Alloys for Space Applications: The Relationship Between Preciilever bending was performed for measuring the viscoelastic properties. Of particular interest is how the loss factor varies with temperatures under solution-treated, age-hardened and over-aged conditions. A direct link between the second phase formation and viscoelastic properties of the alloys was determined.
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High-Performance Mg–4Al–4RE (RE = Cerium and Lanthanum) Die-Casting Alloy anelasticity is observed at low stress–strain levels. A higher offset strain method is proposed to improve the accuracy of yield strength measurement for die-cast magnesium alloys. It is shown that the properties of AE44 exceed many aluminium casting alloys.
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Electrical Resistivity of Binary Mg Alloysof intermetallic phases. A phenomenological formula can be used to describe the relationship between the resistivity and the volume fraction of precipitates. With the help of this formula, resistivity can be used to quantify the precipitation kinetics of binary magnesium alloys.
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