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Investigation of AlSi coatings prepared by laser-assisted atmospheric plasma spraying of internal surfaces of tubes

机译:通过管的激光辅助大气等离子体喷涂制备的Alsi涂层的研究

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Laser-assisted atmospheric plasma spraying (LAAPS) is a new one-step coating process performed in air whereby the laser beam interacts with the plasma torch at the substrate or coating surface during deposition to generate a coating that is metallurgically bonded to the substrate. This hybrid process was developed in order to combine the specific advantages of APS and laser cladding. In this paper, the development of a hybrid gun for coating internal surfaces of tubes and cylinder bores by LAAPS is presented. The process was optimized for spraying AlSi30 coatings on internal surfaces of aluminum alloy cylinder bores. Single-pass coatings with thicknesses of 300-400 μm and metallurgical bonding to the substrates can be realized by applying an optimized parameter set. The dependence of coating microstructure on spray parameters was investigated by metallographic preparation and optical microscopy. Surface pretreatment must be performed to eliminate the strongly adhering oxide layer on the aluminum alloy substrate and to attain metallurgical bonding of coating to substrate.
机译:激光辅助的大气等离子体喷涂(LAPAPS)是在空气中进行的新的一步涂覆工艺,由此激光束在沉积期间在基板或涂层表面处与等离子体炬相互作用以产生冶金粘合到基板上的涂层。开发了这种混合过程,以结合APS和激光包层的特定优点。在本文中,提出了一种通过LAAP涂覆用于涂覆管和气缸孔的内表面的混合枪的开发。该方法优化用于在铝合金气缸孔的内表面上喷涂Alsi30涂层。通过施加优化的参数集,可以实现具有300-400μm的单通涂层,厚度为300-400μm和与基板的冶金键合。通过金相制备和光学显微镜研究了涂层微观结构对喷射参数的依赖性。必须进行表面预处理,以消除铝合金基质上的强粘附的氧化物层,并达到涂层的冶金键合到基材上。

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