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Title:Influence of forging temperature on performance of magnesium-based hydrogen storage alloys for new energy vehicle battery
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ClassificationCode:TH164
year,vol(issue):pagenumber:2024,49(2):31-36
Abstract:

  In order to investigate the influence of forging temperature on the charge-discharge cycle stability and corrosion resistance of Mg0.9V0.1Ni magnesium-based hydrogen storage alloy, the Mg0.9V0.1Ni magnesium-based hydrogen storage alloy specimens prepared by the three-step method of mechanical ball milling, tableting and sintering were forged under different initial and final forging temperatures, and the charge-discharge cycle stability and corrosion resistance at room temperature of alloy specimens were tested and comparatively analyzed. The results, show that forging can significantly reduce the decay rate of discharge capacity for Mg0.9V0.1Ni magnesium-based hydrogen storage alloys,promote the positive shift of corrosion potential for hydrogen storage alloys, and significantly improve the charge-discharge cycle stability and corrosion resistance of hydrogen storage alloys. Compared with the unforged hydrogen storage alloy, the discharge capacity decay rate of Mg0.9V0.1Ni magnesium-based hydrogen storage alloy prepared at the initial forging temperature of 400 ℃ and the final forging temperature of 310 ℃ decreases by 35.68%, and the positive shift of corrosion potential is 114 mV, and the overall performance is optimal. 

 
Funds:
郑州电力高等专科学校2023年度科研项目(ZEPCKY-2023-02);2024年度河南省科技攻关项目;河南省高等学校重点科研项目(22B480005)
AuthorIntro:
张慧丽(1978-),女,硕士,副教授
Reference:

 


 

 


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