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首页> 外文期刊>Composites Science and Technology >Significantly enhanced structural integrity of adhesively bonded PPS and PEEK composite joints by rapidly UV-irradiating the substrates
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Significantly enhanced structural integrity of adhesively bonded PPS and PEEK composite joints by rapidly UV-irradiating the substrates

机译:通过快速紫外线照射基材来显着提高粘合的PPS和PEEK复合关节的结构完整性

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摘要

A high-power UV-irradiation technique was proposed for the surface treatment of PPS and PEEK composites, aiming to achieve good adhesion with epoxy adhesives. The composite substrates were rapidly UV-irradiated for a duration of between 2-30 s, and then bonded using an aerospace film adhesive to produce joints. Tensile lap-shear strength and mode-I and mode-II fracture energies of the adhesive joints were investigated. It was observed that the application of a short-time UV-irradiation to the substrates transformed the failure mode of the specimens from adhesion failure to substrate damage in all cases. This consequently resulted in remarkable improvements in the mechanical and fracture performance of the adhesive joints. For example, the lap-shear strength increased from 11.8 MPa to 31.7 MPa upon UV-irradiating the PPS composites for 3 s, and from 8.3 MPa to 37.3 MPa by applying a 5 s UV-irradiation to the PEEK composites. Moreover, the mode-I and modeII fracture energies significantly increased from similar to 50 J/m(2) to similar to 1500 J/m(2) and from 300 J/m(2) to similar to 7000 J/m(2), respectively for both of the adhesively bonded PEEK and PPS composite joints.
机译:提出了一种高功率UV辐射技术,用于PPS和PEEK复合材料的表面处理,旨在实现与环氧粘合剂的良好粘合性。复合衬底在2-30秒之间迅速照射紫外线,然后使用航空膜粘合剂粘合以产生关节。研究了粘合剂接头的拉伸剪切强度和模式-I和模式-I和模式-II裂缝能量。观察到,在所有情况下,将短时紫外线辐射施加到基材上,从粘附失败转化了试样的故障模式,在所有情况下含有衬底损伤。因此,这导致粘合剂的机械和断裂性能显着改善。例如,在UV照射PPS复合材料3 s时从11.8MPa的剪切强度从11.8MPa辐射,并通过向PEEK复合材料施加5秒的辐射来增加8.3MPa至37.3MPa。此外,模式-I和模式断裂能量显着增加到与50J / m(2)类似于1500 j / m(2)和<300 j / m(2)至类似于7000 j / m( 2)分别用于两种粘合的PEEK和PPS复合接头。

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