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Ultrasonic cleaning of SBR rubber to improve the performance of subsequent plasma torch treatment

机译:超声波清洗SBR橡胶以改善后续等离子炬处理的性能

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摘要

Paraffin wax and other moieties in sulfur vulcanized styrene-butadiene rubber formulations may migrate to the surface,reducing the adhesive strength in joints produced with polyurethane adhesive.In this study,with the aim to remove paraffin wax and other anti-adhesion moieties on the rubber surface to improve adhesion,prior to plasma torch treatment,a methyl ethyl ketone(MEK)cleaning in an ultrasonic bath has been carried out.The surface modifications produced on the rubber surface have been analyzed by contact angle measurements,ATR-IR spectroscopy,XPS and SEM.The adhesion properties have been evaluated by T-peel strength of treated rubber/polyurethane ad-hesivejoints.Ultrasonic cleaning in MEK resulted in partial removal of paraffin wax on the rubber surface and,thus,lower contact angle values,decreased relative intensity of the infrared bands due to hydrocarbon moieties and lower percentage of carbon assessed from XPS spectroscopy were obtained.The ultrasonic cleaning in MEK of the rubber increased the effectiveness of the atmospheric pressure plasma torch treatment,and surface oxidation was produced.However,the oxidation degree decreased with time after plasma torch treatment,likely due to ageing of the surface treated rubber.
机译:硫磺硫化的丁苯橡胶配方中的石蜡和其他部分可能会迁移到表面,从而降低聚氨酯粘合剂生产的接缝的粘合强度。本研究旨在去除橡胶上的石蜡和其他防粘部分表面以提高附着力,在等离子炬处理之前,已在超声波浴中进行了甲乙酮(MEK)清洁。通过接触角测量,ATR-IR光谱,XPS分析了橡胶表面产生的表面改性通过处理后的橡胶/聚氨酯胶粘剂接头的T剥离强度评估其粘合性能.MEK中的超声波清洗导致部分去除了橡胶表面上的石蜡,因而接触角值降低,相对强度降低通过XPS光谱获得了由烃部分和较低的碳百分比引起的红外谱图。橡胶提高了常压等离子炬处理的效率,并产生了表面氧化。但是,等离子炬处理后,氧化程度随时间而下降,这可能是由于表面处理过的橡胶老化所致。

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