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首页> 外文期刊>Journal of Thermal Spray Technology >Cold Spray Aluminum–Alumina Cermet Coatings: Effect of Alumina Content
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Cold Spray Aluminum–Alumina Cermet Coatings: Effect of Alumina Content

机译:冷喷涂铝 - 氧化铝金属陶瓷涂料:氧化铝含量的影响

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Deposition behavior and deposition efficiency were investigated for several aluminum–alumina mixture compositions sprayed by cold spray. An increase in deposition efficiency was observed. Three theories postulated in the literature, explaining this increase in deposition efficiency, were investigated and assessed. Through finite element analysis, the interaction between a ceramic particle peening an impacting aluminum particle was found to be a possible mechanism to increase the deposition efficiency of the aluminum particle, but a probability analysis demonstrated that this peening event is too unlikely to contribute to the increment in deposition efficiency observed. The presence of asperities at the substrate and deposited layers was confirmed by a single-layer deposition efficiency measurement and proved to be a major mechanism in the increment of deposition efficiency of the studied mixtures. Finally, oxide removal produced by the impact of ceramic particles on substrate and deposited layers was evaluated as the complement of the other effects and found to also play a major role in increasing the deposition efficiency. It was found that the coatings retained approximately half of the feedstock powder alumina content. Hardness tests have shown a steady increase with the coating alumina content. Dry wear tests have revealed no improvement in wear resistance in samples with an alumina content lower than 22?wt.% compared to pure aluminum coatings. Adhesion strength showed a steady improvement with increasing alumina content in the feedstock powder from 18.5?MPa for pure aluminum coatings to values above 70?MPa for the ones sprayed with the highest feedstock powder alumina content.
机译:研究了通过冷喷雾喷射的几种铝 - 氧化铝混合物组合物研究沉积行为和沉积效率。观察到沉积效率的增加。研究和评估了三种文献中假设的理论,解释了沉积效率的增加。通过有限元分析,发现陶瓷颗粒之间的陶瓷颗粒之间的相互作用是一种可能的机制,以提高铝颗粒的沉积效率,但概率分析表明这种喷丸事件太不可能有助于增量贡献观察到沉积效率。通过单层沉积效率测量证实了基板和沉积层处的胰管粗糙的存在,并证明了所研究混合物沉积效率的增量的主要机制。最后,通过陶瓷颗粒对基板和沉积层的影响产生的氧化物去除评价为其他效果的补体,发现在增加沉积效率时也发挥了重要作用。发现涂层保留了大约一半的原料粉末氧化铝含量。硬度试验显示涂料氧化铝含量稳步增加。干式磨损试验揭示了氧化铝含量低于22μm·重量%的样品中耐磨性的改善。%与纯铝涂层相比。粘合强度显示出在原料粉末中的氧化铝含量增加18.5μmO2的氧化铝含量,用于纯铝涂层的纯铝涂层至70℃以上的值。MPa用于喷涂最高原料粉末氧化铝含量。

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