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Influence of Processing Parameters on Laser Direct Joining of CFRTP and Stainless Steel

机译:加工参数对CFRTP和不锈钢激光直接加密的影响

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摘要

The CFRTP and the stainless steel were joined by the fiber laser, and the effect of processing parameters on the joint quality was investigated in detail. The heat-affected zone on the stainless steel and the microstructure of the joint interface were examined and analyzed. The results showed that the laser joining process refines the microstructure of the fusion and heat-affected zones in the stainless steel. And the tensile strength of the joint was affected greatly by the laser power and scanning speed but slightly by the clamping pressure. With the PPS additive, the joint shear strength could be improved, and the optimal PPS additive thickness is 300 μm. With the best parameters, joint with a shear strength of 15–17 MPa could be obtained as the laser power is 320–350 W, the scanning speed is 4-5 mm/s, the clamping pressure is about 0.5 Mpa, and the additive PPS thickness is about 300 μm.
机译:CFRTP和不锈钢通过光纤激光器连接,并详细研究了加工参数对关节质量的影响。检查并分析了不锈钢上的热影响区域和联合界面的微观结构。结果表明,激光连接过程将融合和热影响区域中的不锈钢中的微观结构精炼。并且接头的拉伸强度受激光功率和扫描速度大大影响,但略微受夹紧压力。通过PPS添加剂,可以提高关节剪切强度,并且最佳PPS添加剂厚度为300μm。具有最佳参数,可以获得剪切强度为15-17MPa的接头,因为激光功率为320-350W,扫描速度为4-5毫米/秒,夹紧压力约为0.5MPa,以及添加剂PPS厚度约为300μm。

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