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首页> 外文期刊>Strength of Materials >EFFECT OF THE SURFACE TEXTURE ON LASER JOINING OF A CARBON FIBER-REINFORCED THERMOSETTING PLASTIC AND STAINLESS STEEL
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EFFECT OF THE SURFACE TEXTURE ON LASER JOINING OF A CARBON FIBER-REINFORCED THERMOSETTING PLASTIC AND STAINLESS STEEL

机译:表面纹理对碳纤维增强热固性塑料和不锈钢激光接合的影响

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摘要

A carbon fiber-reinforced thermosetting plastic and stainless steel were joined by the fiber laser. The surface texture effect on the joint was investigated. The abrasive paper scratching is shown to form single directional striae on stainless steel with intermittent ridges. Laser texture processing creates uniformly distributed microdimples and ridges, which forms a rectangular cellular structure. This processing can improve the fluidity of molten polyphenylene sulfite during laser joining. Laser scanning on stainless steel results in the formation of fusion and heat-affected zones. In the heat-affected zone, lathy ferrite is located along the boundary, while in the fusion zone, ferrite forms the skeletal structure and separates austenite into a cellular structure. The surface texture modification can contribute to the adhesive strength between stainless steel and polyphenylene sulfite through on enlarged contact surface area by forming striae, microdimples, and ridges. As compared to the abrasive paper scratching, the stainless steel/plastic joint with laser texture processing exhibits a higher shear strength.
机译:碳纤维增强热固性塑料和不锈钢通过光纤激光器连接。研究了对关节的表面纹理效果。显示出磨料涂抹刮擦,在具有间歇脊的不锈钢上形成单向条纹。激光纹理处理产生均匀分布的微模子和脊,形成矩形蜂窝结构。该处理可以改善激光连接期间熔融聚苯亚硫酸盐的流动性。在不锈钢上的激光扫描导致融合和热影响的区域的形成。在热影响区域中,损伤铁氧体沿着边界位于融合区内,铁氧体形成骨骼结构并将奥氏体分离成蜂窝结构。通过形成条纹,微面积和脊,表面纹理改性可促进不锈钢和聚苯亚硫酸盐之间的粘合强度。与磨损纸刮擦相比,具有激光纹理处理的不锈钢/塑料接头具有更高的剪切强度。

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