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Nanostructured 2024Al-SiCp composite coatings

机译:纳米结构2024Al-SiCp复合涂层

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摘要

The microstructure and mechanical properties of plasma sprayed nanostructured 2024Al alloy were investigated before and after adding SiC particles on weathering steel (Cor-Ten A242) substrate. Mechanical alloying (MA) was used to synthesise the nanostructured 2024Al and 2024Al-15 wt-% SiC composite powders. X-ray diffraction studies showed SiCp embedment in the Al matrix after MA and nanograins in the MA powder and coatings. It was found that the porosity level in the coating was reduced to 2% and the coating hardness was increased to 3276 MPa. The high adhesion strength of the coatings observed can be attributed to the higher degree of diffusion at the interface. In these experiments, there was 60% decrease in the wear rate of the coatings. Results show that MA decreases the size of the matrix grains to 45 nm for the MA powder and 17 nm for the coating. The results of mechanical and wear tests also indicate that MA and the addition of SiC particles increased the strength, hardness and wear resistance of 2024Al and remarkably decreased its ductility.
机译:研究了等离子喷涂纳米结构的2024Al合金在耐候钢(Cor-Ten A242)基体上添加SiC颗粒前后的组织和力学性能。机械合金化(MA)用于合成纳米结构的2024Al和2024Al-15 wt%SiC复合粉末。 X射线衍射研究表明,MA后SiCp嵌入Al基体中,而MA粉末和涂层中存在纳米颗粒。发现涂层中的孔隙率降低到2%,涂层硬度增加到3276MPa。观察到的涂层的高粘附强度可归因于界面处较高的扩散度。在这些实验中,涂层的磨损率降低了60%。结果表明,MA将MA粉末的基体晶粒尺寸减小至45 nm,对于涂层将其减小至17 nm。机械和磨损测试的结果还表明,MA和SiC颗粒的添加提高了2024Al的强度,硬度和耐磨性,并显着降低了其延展性。

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