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An Overview of Hot- and Warm-Forming of Al-Mg Alloys

机译:Al-Mg合金热和颗粒的概述

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Al-Mg alloys exhibit remarkable hot and warm ductilities, which have made the 5000-series alloys a critical part of commercial hot gas-pressure forming operations for the transportation industry. A review of the metallurgical and practical engineering reasons for this success is presented, and new understanding for behaviors in these materials, expected to impact future advances in hot- and warm-forming technology, are described. The excellent formabilities in this material class are fundamentally attributable to two deformation mechanisms, grain-boundary-sliding and solute-drag creep. However, a number of failure mechanisms ultimately limit final ductility and formability. These include cavitation, flow localization and microstructure evolution. The interplay of these mechanisms is discussed in terms of the potential to improve processing windows in forming operations.
机译:Al-Mg合金表现出显着的热和温暖的可燃,这使得5000系列合金为交通工业的商业热气体压力成型操作的关键部分。介绍了对这一成功的冶金和实用工程原因进行了综述,并描述了这些材料中的行为的新理解,预计会影响未来的热和预热技术的进步。该材料类中的优异形式基本上应归因于两个变形机制,晶界滑动和溶质 - 阻力蠕变。然而,许多故障机制最终限制了最终的延展性和可成形性。这些包括空化,流量定位和微观结构演化。这些机制的相互作用是在改进在形成操作中的处理窗口的潜力方面讨论的。

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