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首页> 外文期刊>International Journal of Adhesion & Adhesives >Laser ablation surface preparation for adhesive bonding of carbon fiber reinforced epoxy composites
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Laser ablation surface preparation for adhesive bonding of carbon fiber reinforced epoxy composites

机译:碳纤维增强环氧复合材料粘接的激光烧蚀表面处理

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摘要

Adhesive bonding of carbon fiber reinforced plastic (CFRP) epoxy composites provides many advantages over mechanical fastening for assembling aerospace structures including weight savings, reduced manufacturing flow, and added structural efficiency. To ensure the reliability of bonded joints in primary airframe structures, the surface preparation method and execution are critical. Surface preparation is widely recognized as a key step in the bonding process and is one element of a bonding method that must be controlled to produce robust and predictable bonds in a precise and repeatable manner. Laser ablation of composite surface resin can provide an efficient, precise, and reproducible means of preparing composite surfaces for adhesive bonding. Advantages include elimination of physical waste (i.e., grit media and sacrificial peel ply layers that ultimately require disposal), reduction in process variability due to increased precision (e.g. monitoring laser parameters), and automation of surface preparation. This paper describes a surface preparation technique using a nanosecond, frequency-tripled Nd:YAG laser source. Lap shear specimens were laser treated and tested and apparent shear strength and failure modes of lap shear specimens were used to assess mechanical performance over a three-year accelerated aging study by exposing bonded specimens to 71 degrees C (160 degrees F) and 85% relative humidity. Published by Elsevier Ltd.
机译:碳纤维增强塑料(CFRP)环氧复合材料的粘接比组装航空航天结构的机械紧固具有许多优势,包括减轻重量,减少制造流程并提高结构效率。为了确保主要飞机机身结构中接合接头的可靠性,表面准备方法和执行至关重要。表面处理已被广泛认为是粘接过程中的关键步骤,并且是粘接方法的一个要素,必须对其进行控制,以精确且可重复的方式产生牢固而可预测的粘接。复合材料表面树脂的激光烧蚀可为制备用于粘合的复合材料表面提供有效,精确且可重现的方法。优点包括消除物理浪费(即最终需要处理的砂砾介质和牺牲性剥离层),由于提高的精度(例如监控激光参数)而减少工艺可变性以及自动化表面处理。本文介绍了一种使用纳秒级三倍频Nd:YAG激光源的表面制备技术。对搭接剪切试样进行了激光处理和测试,并通过将搭接试样暴露于71摄氏度(160华氏度)和相对湿度的85%的条件下,通过三年的加速老化研究评估了搭接试样的表观抗剪强度和破坏模式。湿度。由Elsevier Ltd.发布

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