首页> 外文期刊>Scientific reports. >Adhesive-free adhesion between heat-assisted plasma-treated fluoropolymers (PTFE, PFA) and plasma-jet-treated polydimethylsiloxane (PDMS) and its application
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Adhesive-free adhesion between heat-assisted plasma-treated fluoropolymers (PTFE, PFA) and plasma-jet-treated polydimethylsiloxane (PDMS) and its application

机译:热辅助等离子体处理的含氟聚合物(PTFE,PFA)与等离子体喷射处理的聚二甲基硅氧烷(PDMS)之间的无粘合剂粘合及其应用

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Conventional low-temperature plasma treatment was reported to minimally improve the adhesion?property of polytetrafluoroethylene (PTFE), whereas heat-assisted plasma (HAP) treatment significantly improved the same. An unvulcanized rubber was previously used as an adherent for PTFE. This study aimed to achieve strong adhesive-free adhesion between PTFE and vulcanized polydimethylsiloxane (PDMS) rubber. As-received vulcanized PDMS rubber did not adhere to HAP-treated PTFE, and as-received PTFE did not adhere to vulcanized rubber of plasma-jet (PJ) treated PDMS rubber; however, HAP-treated PTFE strongly adhered to vulcanized PJ-treated PDMS rubber, and both PTFE and PDMS exhibited cohesion failure in the T-peel test. The surface chemical compositions of the PTFE and PDMS sides were determined using X-ray photoelectron spectroscopy. The strong PTFE/PDMS adhesion was explained via hydrogen and covalent bond formation (C–O–Si and/or C(=O)–O–Si) between hydroxyl (C–OH) or carboxyl (C(=O)–OH) groups of the HAP-treated PTFE. This process was also applied to adhesive-free adhesion between a tetrafluoroethylene–perfluoroalkylvinylether copolymer (PFA) and PDMS; subsequently, a translucent PFA/PDMS assembly with strong adhesion was realized together with the PTFE/PDMS assembly. Strong adhesive-free adhesion between fluoropolymers (PTFE, PFA) and vulcanized PDMS rubber without using any adhesives and graft polymer was successfully realized upon plasma treatment of both the fluoropolymer and PDMS sides. Additionally, a PDMS sheet, which was PJ-treated on both sides, was applied to strongly adhere fluoropolymers (PTFE, PFA) to materials such as metal and glass. PJ-treated PDMS was used as an intermediate layer rather than a strong adhesive, achieving PTFE/PDMS/metal and PTFE/PDMS/glass assemblies. The PTFE/PDMS, PDMS/metal, and PDMS/glass adhesion strengths exceeded 2?N/mm.
机译:据报道,传统的低温等离子体处理可以最小程度地提高聚四氟乙烯(PTFE)的粘合性能,而热辅助等离子体(HAP)处理则可以显着改善这种粘合性能。以前使用未硫化的橡胶作为PTFE的粘合剂。这项研究旨在实现PTFE与硫化聚二甲基硅氧烷(PDMS)橡胶之间的强力无粘合剂粘合。初次硫化的PDMS橡胶不粘附在HAP处理的PTFE上,初次聚四氟乙烯不粘附在等离子流(PJ)处理的PDMS橡胶的硫化橡胶上。然而,经过HAP处理的PTFE牢固地粘附到了经硫化的PJ处理过的PDMS橡胶上,并且PTFE和PDMS在T型剥离试验中均表现出内聚破坏。 PTFE和PDMS侧面的表面化学成分使用X射线光电子能谱测定。强大的PTFE / PDMS粘附力是通过羟基(C–OH)或羧基(C(= O)–OH)之间的氢和共价键形成(C–O–Si和/或C(= O)–O–Si)来解释的)HAP处理过的PTFE组。此工艺还用于四氟乙烯-全氟烷基乙烯基醚共聚物(PFA)与PDMS之间的无粘合剂粘合;随后,与PTFE / PDMS组件一起实现了具有强粘合力的半透明PFA / PDMS组件。通过对含氟聚合物和PDMS的两面进行等离子处理,成功地实现了含氟聚合物(PTFE,PFA)与硫化PDMS橡胶之间的强力无粘合剂粘合,而无需使用任何粘合剂和接枝聚合物。另外,将两面均经过PJ处理的PDMS片材用于将含氟聚合物(PTFE,PFA)牢固粘合到金属和玻璃等材料上。经过PJ处理的PDMS用作中间层而不是坚固的粘合剂,从而实现PTFE / PDMS /金属和PTFE / PDMS /玻璃组件。 PTFE / PDMS,PDMS /金属和PDMS /玻璃的粘合强度超过2?N / mm。

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