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Manufacturing of Copper Based Composites Reinforced with Ceramics and Hard Intermetallics for Applications of Electric Motor Repair Parts

机译:用陶瓷和硬金属间金属化合物加固铜基复合材料的制造,用于电动机维修部件的应用

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In the present work, a recycled copper based composites reinforced with ceramic as an alternative replacement for the application of electric motor repair parts with the use of novel processing techniques. A practical solution was proposed as cost effective economic manufacturing of the composites for this type of applications. Copper based composite design (Cu-Al-Nb_2Al) was based on the ceramic reinforcements such as titanium carbide (TiC) in different percentages and niobium aluminate intermetallics (Nb_2Al). Because TiC and Nb_2Al make a good combination of thermal and electrical conductivities, microstructural stability and strength retention at elevated temperatures, etc. These reinforcements increase considerably wear resistance of the composites for electrical contact applications. Otherwise, certain percentage of fresh scrap aluminium powder, the mixture of AA1050 (80 wt% + AA7075 (20 wt %) chips were used to create an exothermic combustion reaction in the process for helping diffusion bonding process of the ceramics to the copper matrix. At the first stage of the present work a preliminary study has been carried out for developing a cost effect and high wear resistant electrical brushes for aeronautical applications. Microstructural and wear analyses have been carried out to optimize the process conditions for a practical tool that will be used for final industrial applications. Three basic compositions were prepared depending on the percentage of TiC. The microstructure and damage analyses have been carried out by Scanning Electron Microscope (SEM).
机译:在本作工作中,通过陶瓷加强了一种再生的铜基复合材料,作为应用新的加工技术应用电动机修理部件的替代替代品。提出了一种实用的解决方案,作为这种应用的复合材料的成本效益经济制造。基于铜的复合设计(Cu-Al-NB_2AL)基于不同百分比和铝酸铝酸铌(NB_2AL)中的陶瓷增强剂如碳化钛(TIC)。因为TIC和NB_2AL在升高的温度下进行热和电导率,微观结构稳定性和强度保留等所以这些增强剂增加了电接触应用的复合材料的显着耐磨性。否则,某些百分比的新鲜废料铝粉末,AA1050的混合物(80wt%+ Aa7075(20wt%)芯片用于在工艺中产生放热燃烧反应,以帮助将陶瓷的扩散粘合过程帮助铜基质。在本工作的第一阶段,已经开展了初步研究,用于开发用于航空应用的成本效果和高耐磨电刷。已经进行了微观结构和磨损分析,以优化将是一种实用工具的工艺条件用于最终的工业应用。根据TIC的百分比制备三种基本组合物。通过扫描电子显微镜(SEM)进行微观结构和损伤分析。

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