Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5454939 | Materials Characterization | 2017 | 25 Pages |
Abstract
Development of high strength lithium battery shell alloy is highly desired for new energy automobile industry. The microstructures and mechanical properties of Al-Cu-Mn-Mg-Fe alloy with different CeLa additions were investigated through optical microscopy (OM), X-ray diffraction (XRD), scanning electron microscopy (SEM), transmission electron microscopy (TEM), Rietveld refinement and tensile testing. Experimental results indicate that Al8Cu4Ce and Al6Cu6La phases formed due to CeLa addition. Addition of 0.25Â wt.% CeLa could promote the formation of denser precipitation of Al20Cu2Mn3 and Al6(Mn, Fe) phases, which improved the mechanical properties of the alloy at room temperature. However, up to 0.50Â wt.% CeLa addition could promote the formation of coarse Al8Cu4Ce phase, Al6Cu6La phase and Al6(Mn, Fe) phase, which resulted in weakened mechanical properties.
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Authors
Jiandi Du, Dongyan Ding, Zhou Xu, Junchao Zhang, Wenlong Zhang, Yongjin Gao, Guozhen Chen, Weigao Chen, Xiaohua You, Renzong Chen, Yuanwei Huang, Jinsong Tang,