外文翻译--镁合金电动车轮毂微弧氧化生产研究
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1、 中文 4135 字 本科生毕业设计(论文)专业外文翻译 原 文 : Magnesium alloy electric wheel hub micro-arc oxidation production research 译 文 : 镁合金电动车轮毂微弧氧化生产研究 指导教师 : 职称 : 学生姓名 : 学号 : 专 业 : 机械设计制造及其自动化 院(系) : 机电工程学院 2015 年 4 月 10 日 1 Magnesium alloy electric wheel hub micro-arc oxidation production research Most electric vehi
2、cles at home and abroad is configured to aluminum alloy wheel hub, its quality, energy saving, shock absorption, noise reduction and vehicle dynamics characteristics index is much lower than magnesium alloys. Magnesium alloy is 30% lighter than aluminum alloy, the damping effect is 30 times that of
3、aluminum alloy. Replace the aluminum alloy with magnesium alloy wheel hub, driving the development of magnesium alloy material development and deep processing technology, to reduce electric vehicle weight and power consumption, energy conservation and environmental protection; To reduce vibration an
4、d noise; Improve ride comfort and electric vehicle dynamic characteristics such as objective (transportation quality each reduce 10%, energy consumption will be reduced 8% 10%). But its corrosion resistance is poor, seriously limits the application. Commonly used chemical oxidation and anode oxidati
5、on formation of oxide film on magnesium alloy has certain protective effect, but its corrosion resistance, environmental friendliness, appearance is not satisfactory, be badly in need of the development of new surface treatment. In recent years, people trying to develop a variety of new technologies
6、, such as micro arc oxidation technology, the better One Micro-arc oxidation mechanism Micro-arc oxidation technology is a new surface treatment technology of green environmental protection, can grow in light metal surface in situ ceramic layer directly. Its technological characteristics, surface tr
7、eatment, as well as the performance of the since the technology was invented by the favour of people, its mechanism is to light metals such as aluminum, magnesium, titanium and its alloy put in electrolyte aqueous solution as anode, using the method of electrochemical spark discharge spots on the su
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