Ku H S, Siores E, Ball J A
Faculty of Engineering and Surveying, University of Southern Queensland (USQ), Australia.
J Microw Power Electromagn Energy. 1999;34(4):195-205. doi: 10.1080/08327823.1999.11688406.
The wide range of applications of microwave technology in manufacturing industries has been well documented (NRC, 1994; Thuery, 1992). In this paper, a new way of joining fibre reinforced thermoplastic composites with or without primers is presented. The microwave facility used is also discussed. The effect of power input and cycle time on the heat affected zone (HAZ) is detailed together with the underlying principles of test piece material interactions with the electromagnetic field. The process of autogenous joining of 33% by weight of random glass fibre reinforced Nylon 66, polystyrene (PS) and low density polyethylene (LDPE) as well as 23.3% by weight of carbon fibre reinforced PS thermoplastic composites is discussed together with developments using filler materials, or primers in the heterogenous joining mode. The weldability dependence on the dielectric loss tangent of these materials at elevated temperatures is also described.
微波技术在制造业中的广泛应用已有充分记录(国家研究委员会,1994年;图里,1992年)。本文介绍了一种连接有或没有底漆的纤维增强热塑性复合材料的新方法。还讨论了所使用的微波设备。详细阐述了功率输入和循环时间对热影响区(HAZ)的影响以及试件材料与电磁场相互作用的基本原理。讨论了33%重量比的无规玻璃纤维增强尼龙66、聚苯乙烯(PS)和低密度聚乙烯(LDPE)以及23.3%重量比的碳纤维增强PS热塑性复合材料的自连接过程,以及在异质连接模式下使用填充材料或底漆的进展情况。还描述了这些材料在高温下的可焊性对介电损耗正切的依赖性。