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首页> 外文期刊>Coatings >Enhancement of the Adhesion of Wire Arc Sprayed Coatings on Carbon Fiber-Reinforced Plastic by Surface Laser Structuring
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Enhancement of the Adhesion of Wire Arc Sprayed Coatings on Carbon Fiber-Reinforced Plastic by Surface Laser Structuring

机译:通过表面激光结构增强丝弧喷涂涂层粘附碳纤维增强塑料的粘附

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Due to their outstanding stiffness-to-weight ratio, fiber-reinforced plastics are established materials for weight reduction in the aerospace and automotive industries. To improve certain properties, such as their low thermal and electrical conductivity, metallic coatings can be applied to the polymer surface. One of the methods used for this purpose is thermal spraying. Studies have shown that the adhesion strength of metallic coatings on polymer surfaces is low. To improve the adhesion strength, the surface of the fiber-reinforced plastics was pretreated with pulsed laser-based methods. This study describes in detail the process chain, the resulting surface conditions and their effect on the adhesion strength of wire arc sprayed copper coatings in pull-off and shear tensile testing. The results show up to ~200% increase in adhesion strength for the laser-structured samples compared to the grit-blasted reference samples in the pull-off test.
机译:由于它们出色的刚度 - 重量比,纤维增强塑料是航空航天和汽车工业的重量减轻材料的材料。 为了改善某些性质,例如它们的低热和导电性,可以将金属涂层施加到聚合物表面上。 用于此目的的一种方法是热喷涂。 研究表明,聚合物表面上金属涂层的粘合强度低。 为了提高粘合强度,用基于脉冲激光的方法预处理纤维增强塑料的表面。 本研究详细描述了过程链,所得到的表面条件及其对拉出线弧形铜涂层的粘附强度的粘附强度的影响。 与拉脱试验中的砂砾喷射的参考样品相比,激光结构样品的粘合强度增加到200%增加了〜200%。

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