Baiocco Gabriele, Rubino Gianluca, Ucciardello Nadia
Dipartimento di Ingegneria Industriale e dell'Informazione e di Economia, University of L'Aquila, Via G. Gronchi 18, 67100 L'Aquila, Italy.
Università della Tuscia, DEIM, Largo dell'Università, 01100 Viterbo, Italy.
Materials (Basel). 2019 Jan 10;12(2):216. doi: 10.3390/ma12020216.
Fluidized bed technology is a methodology widely known in the manufacturing environment for surface treatment of metals. Within the field of surface coating, it has already been exploited for the coating of a magnesium alloy creating a compact layer of Al₂O₃. The result was an improvement in mechanical and tribological properties, along with improved corrosion resistance. In this context, the work proposed is addressed towards the evaluation of the effects of thermal post-treatment on the alumina coating produced by means of the fluidized-bed technology. To analyse the effects of heat treatments the morphology, composition and hardness of the samples were investigated along with adhesion and wear resistance of the alumina film. The results obtained show how the temperature affects the surface morphology and promotes the diffusion of magnesium towards the alumina superficial layer. The mechanisms triggered by heat treatments increase the adhesion of the surface film obtained in the deposition process, improving its mechanical and tribological properties.
流化床技术是制造业环境中广泛用于金属表面处理的一种方法。在表面涂层领域,它已被用于镁合金涂层,形成致密的Al₂O₃层。结果是机械性能和摩擦学性能得到改善,同时耐腐蚀性也有所提高。在此背景下,所提出的工作旨在评估热后处理对流化床技术制备的氧化铝涂层的影响。为了分析热处理的效果,研究了样品的形态、成分和硬度以及氧化铝膜的附着力和耐磨性。所得结果表明温度如何影响表面形态并促进镁向氧化铝表层的扩散。热处理引发的机制增加了沉积过程中获得的表面膜的附着力,改善了其机械性能和摩擦学性能。