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首页> 外文期刊>Journal of Thermoplastic Composite Materials >Process and performance evaluation of ultrasonic, induction and resistance welding of advanced thermoplastic composites
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Process and performance evaluation of ultrasonic, induction and resistance welding of advanced thermoplastic composites

机译:先进热塑性复合材料的超声,感应和电阻焊接工艺和性能评估

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摘要

The possibility of assembling through welding is one of the major features of thermoplastic composites and it positively contributes to their cost-effectiveness in manufacturing. This article presents a comparative evaluation of ultrasonic, induction and resistance welding of individual carbon fibre-reinforced polyphenylene sulphide (PPS) thermoplastic composite samples that comprises an analysis of the static and dynamic mechanical behaviour of the joints as well as of the main process variables. The induction welding process as used in this research benefitted from the conductive nature of the reinforcing fibres. Hence, no sus-ceptor was placed at the welding interface. Resistance welding used a fine-woven stainless-steel mesh as the heating element and low welding pressures and times were applied to prevent current leakage. Triangular energy directors moulded on a separate tape of PPS resin were used to concentrate ultrasonic heat at the welding interface. The static single-lap shear strength of the joints was found similar for induction and ultrasonic welding. A 15% drop in the static mechanical properties of the resistance welded joints was attributed to incomplete welded overlaps following current leakage prevention. However, the fatigue performance relative to the static one was similar for the three sorts of joints. A comparative analysis of process variables such as welding time, required power and energy was also carried out.
机译:通过焊接组装的可能性是热塑性复合材料的主要特征之一,并且对它们在制造中的成本效益做出了积极贡献。本文介绍了对单个碳纤维增强聚苯硫醚(PPS)热塑性复合材料样品进行超声,感应和电阻焊接的比较评估,该分析包括对接头的静态和动态机械性能以及主要工艺变量的分析。本研究中使用的感应焊接工艺得益于增强纤维的导电特性。因此,在焊接界面上没有放置基座。电阻焊接使用精细编织的不锈钢网作为加热元件,并施加了较低的焊接压力和时间以防止电流泄漏。在单独的PPS树脂胶带上模制的三角能量导向器用于将超声波热量集中在焊接界面上。发现接头的静态单圈剪切强度与感应焊和超声焊相似。电阻焊接接头的静态机械性能下降了15%,这归因于防止电流泄漏后不完全的焊接重叠。但是,三种关节相对于静态疲劳性能却相似。还对过程变量(例如焊接时间,所需功率和能量)进行了比较分析。

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