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Factors Affecting the Joint Strength of Ultrasonically Welded Polypropylene Composites

机译:影响超声焊接聚丙烯复合材料接头强度的因素

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Ultrasonic welding of thermoplastic composites has become an important process in industry because of its relatively low cost and resultant high quality joints. An expeIirnental study .based on the Taguchi orthogonal array design. is reported on the effect of different processing factors on the joint strength of ultrasonically welded composites. including weld time. weld pressure. amplltude of vibration. hold time. hold pressure. and geometry of energy director. Three materials were used in the study: virgin polypropylene. and 10% and 30% glass-fiber filled polypropylene composites. Experiments were carried out on a 2000-Watt ultrasonic welding unit. After welding. the joint strength of the composites was determined by a tensile tester. For the factors selected in the main experiments. weld tim~. geometry of en- ergy director and amplitude of vibration were found to be the prmcipal factors af- fecting the joint property of ultrasonically welded thermoplastic composites. Glass- fiber filled polymers required less energy for successful welding than the non-filled polymer. The joint strength of welded parts increased with the fiber content in the composites. In addition. a triangular energy director was found to weld parts of the highest strength for virgin polypropylene and 100/0 glass-fiber filled polypropylene composites. while a semi-circular energy director was found to weld the highest strength parts for 30% glass-fiber filled composites.
机译:热塑性复合材料的超声波焊接由于其相对较低的成本和由此产生的高质量接头而已成为工业上的重要过程。基于田口正交阵列设计的实验研究。报道了不同加工因素对超声焊接复合材料接头强度的影响。包括焊接时间。焊接压力。振动的幅度。保持时间。保持压力。和能量导向器的几何形状。研究中使用了三种材料:纯聚丙烯。以及10%和30%的玻璃纤维填充聚丙烯复合材料。实验是在2000瓦的超声波焊接装置上进行的。焊接后。复合材料的结合强度由拉伸测试仪测定。对于主要实验中选择的因素。焊接时间〜发现能量导向器的几何形状和振动幅度是影响超声焊接热塑性复合材料接头性能的主要因素。与未填充的聚合物相比,玻璃纤维填充的聚合物成功焊接所需的能量更少。焊接零件的结合强度随复合物中纤维含量的增加而增加。此外。对于原始聚丙烯和100/0玻璃纤维填充的聚丙烯复合材料,发现一个三角形的能量导向器可焊接最高强度的零件。同时发现半圆形能量导向器可以焊接30%玻璃纤维填充的复合材料的最高强度零件。

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