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        Mechanical Heterogeneity of Heat-Resistant EV31A Magnesium Alloy with Large Size Processed by Direct-Chill Casting

        Deping Zhang,Boqiong Li,Chaojie Che,Baosheng Liu,Peng Cheng,Yali Zhao,Jinhui Zhang,Liren Cheng 대한금속·재료학회 2023 METALS AND MATERIALS International Vol.29 No.10

        High quality of large-sized EV31A benchmark alloy was fabricated by direct-chill casting, without significant composition segregation along its radial direction. As-cast samples show noticeable mechanical heterogeneity, such as strength decreasing but ductility increasing from the surface to the center positions of the ingot. After heat treatment, however, mechanical properties of the alloy are nearly the same in each position, indicating mechanical homogeneity, which is mainly attributed to the strengthening mechanism transition from grain-boundary hardening in as-cast samples to precipitation hardening in peak-aged samples. In addition, we found that solute hardening is the athermal strengthening which contributes more to high-temperature strength than precipitation hardening, as evidenced by lower strength loss from 25 to 250 °C in T4-treated sample than in peak-aged sample. Solute hardening effect is thermally stable and extends to high temperatures, which favors the retention of linear strain hardening by retarding dynamic recovery. This work thus provides new insight into designing heat-resistant Mg alloys and understanding mechanical heterogeneity of large-scale Mg alloy ingots.

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