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Use of UV-Curing Adhesive Systems on Non-transparent Joining Parts by Using Sidelight Activated Polymer Optical Fibres

机译:通过使用侧灯活性聚合物光纤在非透明连接件上使用紫外线固化粘合剂系统

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The long curing times of the adhesives are an essential deficit of the bonding technology. UV-curing adhesives enable complete curing within seconds, but require at least one light-transparent joining partner. In order to make use of the advantages of UV-curing adhesives also on non-transparent joining parts, the approach of light transfer into the adhesive joint is pursued. A polymer optical fibre (POF) is embedded in the adhesive as a waveguide. With a lateral activation of the fibre surface, a radial curing is realized. In this paper, the effects of side light activation by thread cuts and gradual micro cuts on a PMMA POF with a diameter of 1.0 mm are characterized and validated in corresponding adhesive tests. An experimental setup is established to characterize the activated fibre with regard to sidelight intensity and homogeneity. The wavelengths of the UV light used are 365 and 400 nm. While lateral homogeneous adhesive layer depths of up to 2.5 mm are achieved at 400 nm, the use of UV light at 365 nm proves to be unsuitable for the selected tests.
机译:粘合剂的长固化时间是粘合技术的基本缺陷。 UV固化粘合剂在几秒钟内能够完全固化,但需要至少一个轻透明的连接伴侣。为了利用紫外线固化粘合剂的优点,也在非透明连接部分上,追求光转移到粘合剂接头的方法。聚合物光纤(POF)嵌入粘合剂中作为波导。通过纤维表面的横向激活,实现了径向固化。本文在相应的粘合试验中表征和验证了螺纹切割和逐渐微剪切的侧光激活和逐渐微小切割的效果。建立实验设置,以表征具有侧灯强度和均匀性的活性光纤。使用的UV光的波长为365和400nm。在400nm实现高达2.5mm的横向均相粘合剂层深度,而在400nm下可以使用365nm的UV光被证明是不适合所选测试的。

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