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首页> 外文期刊>Archives of Metallurgy and Materials >Evolution of Microstructure in Rolled Mg-Based Alloy. Textural Aspect / Ewolucja Mikrostruktury W Walcowanym Stopie Na Bazie Mg. Aspekt Teksturowy
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Evolution of Microstructure in Rolled Mg-Based Alloy. Textural Aspect / Ewolucja Mikrostruktury W Walcowanym Stopie Na Bazie Mg. Aspekt Teksturowy

机译:轧制镁基合金的组织演变。基于镁的轧制合金的组织/微观组织演变质地方面

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Magnesium alloys are the lightest structural materials, which makes them particularly suitable for use in the aircraft and automotive industry. However, due to hexagonal close-packed crystal structure, resulting in insufficient number of independent slip systems, magnesium alloys exhibit poor formability at room temperature. Conventional methods of work hardening of magnesium alloys requires the temperature about 300°C, which favours simultaneously processes of thermal recovery and grain growth, but decreases beneficial microstructure strengthening effect. Thus, it is a crucial to undertake development of a technology for semi-finished magnesium alloys elements, which will ensure better mechanical properties of the final products by forming desirable microstructure. In the paper we present the development of crystallographic texture of the Mg-based alloy (Mg-AZ31) in the form of pipe extruded at 430°C and subjected to pilger rolling at relatively low temperature.
机译:镁合金是最轻的结构材料,这使其特别适合在飞机和汽车工业中使用。但是,由于六方紧密堆积的晶体结构,导致独立滑动系统的数量不足,镁合金在室温下表现出较差的可成形性。镁合金的常规加工硬化方法需要约300°C的温度,这有利于同时进行热回收和晶粒长大,但降低了有益的微结构强化效果。因此,至关重要的是开发一种用于镁合金半成品的技术,该技术将通过形成所需的微观结构来确保最终产品具有更好的机械性能。在本文中,我们介绍了在430°C挤压并在相对较低的温度下进行皮尔格轧制的Mg基合金(Mg-AZ31)的晶体织构的发展情况。

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