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Application of variable frequency microwave (VFM) to adhesives

机译:变频微波(VFM)在胶粘剂中的应用

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摘要

[Abstract]:udMicrowave processing of adhesives is a relatively new technology alternative that provides new approaches for enhancing material properties as well as economic udadvantages through energy savings and accelerated product development. Alternative in the sense that most adhesives are normally cured in ambient conditions or in ovens. udHowever, the most commonly used facilities for microwave processing of materials operate on fixed frequency microwaves (FFM), e.g., 2.45 GHz. udThis paper presents a review of microwave technologies, processing methods and industrial applications, using variable frequency microwave (VFM) facilities. The technique offers rapid, uniform and selective heating over a large volume at a high energy coupling efficiency. This is accomplished using a preselected bandwidth sweeping around a central frequency by employing tunable frequency sources. Successful applications of these modern facilities include finding out the optimum cavity conditions of glass or carbon fibre reinforced thermoplastic matrix composites, and of adhesives, e.g., two-part five-minute Araldite, and the joining of the above-mentioned composite materials udwith, or without, primers. Finding out the optimum cavity conditions of a material has helped identify the best frequency range to process the material using microwave udenergy and by means of the VFM facility. Microwave energy has been used to rapidly cure several types of two-part epoxy based adhesives, e.g., Araldite. Bond strengths obtained using variable frequency microwave (VFM)techniques are compared with adhesive joints cured in fixed frequency microwave (FFM) conditions.
机译:[摘要]: ud粘合剂的微波处理是一种相对较新的技术替代方法,它通过节能和加速产品开发,提供了增强材料性能以及经济优势的新方法。在大多数粘合剂通常在环境条件下或在烤箱中固化的意义上,这是一种替代方法。但是,最常用的材料微波处理设备是在固定频率微波(FFM)(例如2.45 GHz)上运行的。 ud本文介绍了使用变频微波(VFM)设施的微波技术,处理方法和工业应用的综述。该技术以高能量耦合效率在大体积上提供快速,均匀且选择性的加热。这是通过使用可调频率源,使用围绕中心频率扫描的预选带宽来实现的。这些现代化设备的成功应用包括找出玻璃或碳纤维增强的热塑性基体复合材料以及粘合剂(例如,两部分五分钟的Araldite)的最佳型腔条件,以及上述复合材料的结合,有无底漆。找出材料的最佳腔体条件有助于确定最佳频率范围,以利用微波超能并通过VFM设备来处理材料。微波能量已经被用于快速固化几种类型的两部分的基于环氧树脂的粘合剂,例如,Araldite。将使用变频微波(VFM)技术获得的粘结强度与在固定频率微波(FFM)条件下固化的胶粘接头进行比较。

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