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首页> 外文期刊>Journal of manufacturing science and engineering: Transactions of the ASME >Bondline Temperature Control for Joining Composites With an Embedded Heater
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Bondline Temperature Control for Joining Composites With an Embedded Heater

机译:用于粘合复合材料和嵌入式加热器的粘合线温度控制

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摘要

This paper applies estimation and control techniques to achieve the desired bondline temperature for out-of-autoclave, adhesive bonding of carbon-fiber composite components. Rather than heating the entire system to cure the adhesive, e.g., in an autoclave, this research uses controlled heating targeted at the bondline with an embedded heater. The main contribution of this work is control using estimates of the bondline temperature without embedded sensors and wiring (of materials not intrinsic to the system) that can lead to reduced bond strength. Sensors placed outside the bond region are used to accurately estimate the bondline temperature to within 2% of the temperature range over which the bondline temperature is changed. Experimental results show that the estimated temperature can be used with feedback to achieve the desired, bondline, time-temperature profile that is needed to cure the adhesive. Additionally, shear lap joint tensile tests show that the resulting joint strength is comparable to specimens bonded using an external heat blanket.
机译:本文运用估计和控制技术来实现碳纤维复合材料的超高压釜,粘合剂粘结所需的粘结线温度。这项研究不是使用整个系统来固化粘合剂,例如在高压釜中进行固化,而是使用嵌入式加热器针对胶合线进行受控加热。这项工作的主要贡献在于使用估计的接合线温度进行控制,而无需嵌入式传感器和(可能不是系统固有的材料的)布线,这可能导致接合强度降低。放置在键合区域外部的传感器用于将键合线温度准确估算到键合线温度变化的温度范围的2%以内。实验结果表明,可以将估计的温度与反馈结合使用,以实现固化粘合剂所需的所需粘合线时间-温度曲线。此外,剪切搭接接头的拉伸试验表明,所得的接头强度与使用外部热毯粘结的样品相当。

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