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Corrosion Resistance of Al–CNT Metal Matrix Composites

机译:Al-CNT金属基复合材料的耐腐蚀性

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摘要

The design of aluminium–graphite metal matrix composites (MMCs) with advanced mechanical properties and high corrosion resistance is in demand for aerospace, transportation, and industrial applications. Breakthroughs in this field are limited due to the tendency of aluminium–graphite MMCs to corrode. In the present research, aluminium-based MMCs were produced by a relatively novel combined two-staged method. Multiwall carbon nanotubes (MWCNTs) were added into molten Al1070 and processed by high-pressure die casting followed by cyclic extrusion. For the composites produced by this method, it was previously demonstrated that mechanical properties are improved in comparison with pure aluminium alloys. In the current study, the manufactured Al–MWCNT composites were investigated by electrochemical tests (such as open circuit potential), potentiodynamic tests, linear polarization tests, and electrochemical impedance spectra to understand the corrosion resistance of the obtained composite material. The experimental testing of the corrosion resistance of Al–MWCNT MMCs showed that due to the advantages of the fabrication method, the addition of CNTs to aluminium does not cause a radical decrease of corrosion resistance.
机译:具有先进的机械性能和高耐腐蚀性的铝 - 石墨金属基质复合材料(MMC)是对航空航天,运输和工业应用的需求。由于铝 - 石墨MMC腐蚀的趋势,该领域的突破是有限的。在本研究中,通过相对新的组合的双分阶段方法生产铝基MMC。将多壁碳纳米管(MWCNT)加入熔融Al1070中,并通过高压压铸后加工,然后环状挤出处理。对于通过该方法产生的复合材料,先前证明了与纯铝合金相比改善了机械性能。在目前的研究中,所制造的Al-MWCNT复合材料通过电化学测试(如开路电位)电位试验中,线性偏振的测试,和电化学阻抗光谱研究,了解所得到的复合材料的耐腐蚀性。 Al-MWCNT MMC的耐腐蚀性的实验测试表明,由于制造方法的优点,将CNT加入铝不引起耐腐蚀性的根本性降低。

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