激光冲击加工技术提高医用镁合金力学性能及微动腐蚀磨损

IF 0.4 Q4 ENGINEERING, MECHANICAL
G. Zh. Sakhvadze
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引用次数: 0

摘要

对采用激光冲击加工技术在不同激光能量下加工镁合金ZK60进行了研究。对激光冲击加工工艺进行了有限元建模,研究了ZK60镁合金在模拟体液环境(汉克平衡盐溶液,HBSS)下的微动腐蚀磨损。研究了激光冲击硬化前后镁合金的力学特性和微动腐蚀磨损。结果表明,激光冲击硬化技术对微动腐蚀磨损的最大降幅约为73.4%。结果表明,该技术可有效降低ZK60镁合金在HBSS环境下的腐蚀速率和微动腐蚀磨损。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Enhancement of the Mechanical Properties and Fretting–Corrosion Wear of Biomedical Magnesium Alloys Using Laser Shock Processing Technology

Enhancement of the Mechanical Properties and Fretting–Corrosion Wear of Biomedical Magnesium Alloys Using Laser Shock Processing Technology

The magnesium alloy ZK60, which is processed using laser shock processing technology at different laser energies, is examined. Finite element modeling of the laser shock processing technology was carried out to study fretting–corrosion wear of the magnesium alloy ZK60 in an environment simulating body fluids (Hank’s balanced salt solution, HBSS). The mechanical characteristics and fretting–corrosion wear of the magnesium alloy before and after processing using the laser impact hardening technology were investigated. The results showed that the maximum reduction in fretting corrosion wear using the laser impact hardening technology was approximately 73.4%. It is shown that this technology can be applied successfully to reduce the rate of corrosion and fretting–corrosion wear of ZK60 magnesium alloys operating in the HBSS environment.

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来源期刊
CiteScore
0.80
自引率
33.30%
发文量
61
期刊介绍: Journal of Machinery Manufacture and Reliability  is devoted to advances in machine design; CAD/CAM; experimental mechanics of machines, machine life expectancy, and reliability studies; machine dynamics and kinematics; vibration, acoustics, and stress/strain; wear resistance engineering; real-time machine operation diagnostics; robotic systems; new materials and manufacturing processes, and other topics.
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