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Investigation on the effect of process parameters in atmospheric pressure plasma treatment on carbon fiber reinforced polymer surfaces for bonding

机译:碳纤维增强聚合物表面对大气压等离子体处理工艺参数对粘接性的影响研究

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Carbon Fiber Reinforced Polymer (CFRP) is used extensively in aerospace applications. Acceptance of bonded CFRP structures, mainly for aerospace applications, requires a robust surface preparation method with improved process controls to ensure high bond quality. Consistent repeatability is a factor lacking from many surface preparation processes. Atmospheric pressure plasma surface treatment is one of the robust surface preparation processes that have drawn wide attention in recent years. This process is capable of being applied in a production clean room environment that would minimize the risk of contamination and reduce cost. In plasma surface treatment the process parameters are easily controlled, documented providing a repeatable process with a high level of consistency. In this paper, the process parameters for atmospheric pressure plasma surface treatment and their effect on bonding for Out-Of-Autoclave (OOA) CFRP composite panels were fully investigated. A mechanized machine with sensory feedback to plasma treat surfaces was developed to change the process parameters for application on larger panels. By the aid of Design of Experiment (DOE) methodology critical process parameters were identified and a mathematical regression model was developed. The mathematical regression model was used to quantify the effect of process parameters on the bonding strength and the model was optimized to find the optimum settings.
机译:碳纤维增强聚合物(CFRP)在航空航天应用中广泛使用。接受粘合的CFRP结构,主要用于航空航天应用,需要一种强大的表面制备方法,具有改进的过程控制,以确保高键合质量。一致的可重复性是缺乏许多表面制备过程的因素。大气压等离子体表面处理是近年来引起了广泛关注的鲁棒表面制备过程之一。该过程能够在生产洁净室环境中应用,这些环境最大限度地减少污染的风险并降低成本。在等离子体表面处理中,容易控制工艺参数,记录提供具有高级别的可重复过程。本文采用了大气压等离子体表面处理的工艺参数及其对高压釜(OOA)CFRP复合板的粘接性的影响。开发了一种具有传感反馈的机械化机,用于改变较大面板上应用的过程参数。借助于实验设计(DOE)方法,鉴定了关键过程参数,开发了数学回归模型。数学回归模型用于量化过程参数对键合强度的影响,并且优化模型以找到最佳设置。

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