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Impact and Lap Shear Properties of Ultrasonically Spot Welded Composite Lap Joints

机译:超声波焊接复合材料圈接头的冲击和膝盖剪切性能

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Ultrasonic spot welding (USSW) is a widely used technique for joining thermoplastics where high frequency, low amplitude vibrations are applied through an ultrasonic horn resting on the polymer surface to create frictional heat, producing a solid state joint between polymer sheets. Advantages such as short weld cycle time, fewer moving components and reproducibility make this technique attractive for automation and industrial use. The goal of this work was to evaluate the feasibility and analyze the lap shear and impact strength of a composite material joint created using ultrasonic spot welding. The base material used for the joints was a composite consisting of a polycarbonate matrix with chopped glass fibers. The strength of the lap joints was determined through experimental lap shear and impact testing. A finite element analysis was conducted for more thorough insight into the stress patterns in the lap joints. Experiments showed that the ultrasonically spot welded joints tested in tensile lap shear loading carried a load 2.3 times higher than adhesive joints and the impact tested joints had an impact strength 3.5 times higher than adhesive joints. The results of this work suggest ultrasonic spot welding as a viable joining method for thermoplastic composite materials.
机译:超声波点焊(USSW)是一种广泛使用的技术,用于通过在聚合物表面上靠在聚合物表面上的超声喇叭施加高频,施加高频率,低振幅振动,以产生摩擦热,在聚合物片之间产生固态接头。短焊接周期时间,移动元件较少和再现性等优点使得这种技术对自动化和工业用途具有吸引力。这项工作的目标是评估使用超声波点焊产生的复合材料接头的可行性和施加强度。用于关节的基材是由具有切碎玻璃纤维的聚碳酸酯基质组成的复合物。通过实验液剪剪切和冲击试验测定旋盖接头的强度。进行了有限元分析,以便更全面地了解圈接头中的应力图案。实验表明,在拉伸剪切载荷中测试的超声波点焊接头载负载比粘合接头高出2.3倍,冲击测试接头的冲击强度高出3.5倍的粘合剂接头。该工作的结果表明超声波点焊作为热塑性复合材料的可行连接方法。

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