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Microstructure and Abrasive Wear Studies of Laser Clad Al-Si/SiC Composite Coatings

机译:激光包覆Al-Si / SiC复合涂层的微观结构和磨料磨损研究

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Surface coatings of Al-Si/SiC metal-matrix composites were deposited on Al-7 wt. % Si alloy substrates by laser cladding. The microstructure of the coatings was characterized by optical microscopy, scanning electron microscopy (SEM) and X-ray diffraction (XRD). The microstructure of the coating material is profoundly influenced by the processing parameters used, in particular by the particle injection velocity and by the specific energy. When the injection velocity is low or specific energy is high excessive dissolution of SiC in the melt pool occurs. The microstructure of the coatings presents partially dissolved SiC particles, and considerable proportions of Al_4SiC_4 plates and faceted Si equiaxed crystals dispersed in a α-Al+Si eutectic matrix. On the contrary for high injection velocity or low specific energy dissolution of SiC is very limited and the microstructure of the coatings consists essentially of undissolved SiC particles in a matrix consisting of primary α-Al dendrites and α-Al+Si eutectic. Abrasive wear tests were performed on the coatings using a ball cratering device and a 35 wt. % suspension of 4.25 μm average diameter SiC particles in water as abrasive. Coatings prepared with a high specific energy present an average hardness of 248 HV and an average abrasive wear rate of 17.4x10~(-5) mm~3/m, Coatings deposited with a low specific energy exhibit an average hardness of 117 HV and an average abrasive wear rate of 4.3 x 10~(-5) mm~3/m.
机译:Al-Si / SiC金属基质复合材料的表面涂层沉积在Al-7重量上。通过激光包层%Si合金基板。通过光学显微镜,扫描电子显微镜(SEM)和X射线衍射(XRD)的特征在于涂层的微观结构。涂层材料的微观结构受到使用的加工参数的深刻影响,特别是通过颗粒注射速度和特定能量。当注射速度低或特定能量时,在熔体池中的SiC过度过度溶解。涂层的微观结构呈现部分溶解的SiC颗粒,以及分散在α-Al + Si共晶基质中的相当大的Al_4SIC_4板和刻面Si等轴晶体。相反,对于高注射速度或SiC的低特异性能量溶解非常有限,并且涂层的微观结构基本上由原α-Al树枝状和α-Al + Si共晶组成的基质中未溶解的SiC颗粒组成。使用滚珠枪式装置和35wt在涂层上进行研磨磨损试验。将4.25μm平均直径SiC颗粒的%悬浮在水中作为磨料。具有高特异性能量制备的涂层,其平均硬度为248HV,平均磨料磨损率为17.4×10〜(-5)mm〜3 / m,沉积沉积的涂层,具有低特异性能量的平均硬度为117 HV和平均磨削磨损率为4.3×10〜(-5)mm〜3 / m。

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