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首页> 外文期刊>International Journal of Minerals,Metallurgy and Materials >Effects of hot compression deformation temperature on the microstructure and properties of Al-Zr-La alloys
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Effects of hot compression deformation temperature on the microstructure and properties of Al-Zr-La alloys

机译:热压缩变形温度对Al-ZR-LA合金微观结构和性能的影响

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摘要

The main goal of this study is to investigate the microstructure and electrical properties of Al-Zr-La alloys under different hot compression deformation temperatures. In particular, a Gleeble 3500 thermal simulator was used to carry out multi-pass hot compression tests. For five-pass hot compression deformation, the last-pass deformation temperatures were 240, 260, 300, 340, 380, and 420A degrees C, respectively, where the first-pass deformation temperature was 460A degrees C. The experimental results indicated that increasing the hot compression deformation temperature with each pass resulted in improved electrical conductivity of the alloy. Consequently, the flow stress was reduced after deformation of the samples subjected to the same number of passes. In addition, the dislocation density gradually decreased and the grain size increased after hot compression deformation. Furthermore, the dynamic recrystallization behavior was effectively suppressed during the hot compression process because spherical Al3Zr precipitates pinned the dislocation movement effectively and prevented grain boundary sliding.
机译:本研究的主要目的是探讨Al-Zr-La合金在不同热压缩变形温度下的微观结构和电性能。特别地,使用Gleeble 3500热模拟器来执行多通热压缩测试。对于五遍热压缩变形,最后一遍变形温度分别为240,260,300,340,380和420A℃,其中第一通道变形温度为460A℃。实验结果表明增加每个通道的热压缩变形温度导致合金的电导率改善。因此,在经受相同数量的通过的样品的变形后减少了流量应力。另外,脱位密度逐渐降低,热压缩变形后晶粒尺寸增加。此外,在热压缩过程中有效地抑制了动态再结晶行为,因为球形AL3ZR沉淀出终止偏移运动和防止晶界滑动。

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