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Improving the mechanical properties of pure magnesium through cold hydrostatic extrusion and low-temperature annealing

机译:通过冷静液压挤压和低温退火改善纯镁的机械性能

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摘要

A way to produce ultrafine grained structure with d ~3 μm and high plasticity in pure magnesium through the original technique of hydrostatic extrusion at room temperature has been demonstrated. The microstructure and the mechanical properties of the extruded magnesium rods have been investigated. The evolution of mechanical properties of the samples after treatments up to 450 ℃ has been analyzed. It has been shown that low-temperature treatments lead to some increase in strength and plasticity of pre-deformed magnesium. The annealing hardening phenomenon is explained by the thermally activated processes of rearrangement of the dislocation structure and blocking of dislocations.
机译:通过在室温下静液压挤压的原始技术,证明了一种在纯镁中生产d〜3μm和高可塑性的超细晶粒结构的方法。研究了挤压镁棒的组织和力学性能。分析了样品在450℃以下处理后力学性能的变化。已经表明,低温处理导致预变形镁的强度和可塑性有所提高。退火硬化现象通过位错结构的重排和位错的阻塞的热活化过程来解释。

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