首页> 外文期刊>International Journal of Adhesion & Adhesives >Improvement of adhesion strength of self-adhesive silicone rubber on thermoplastic substrates - Comparison of an atmospheric pressure plasma jet (APPJ) and a Pyrosil (R) flame
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Improvement of adhesion strength of self-adhesive silicone rubber on thermoplastic substrates - Comparison of an atmospheric pressure plasma jet (APPJ) and a Pyrosil (R) flame

机译:改善自粘性硅橡胶在热塑性基材上的粘合强度-大气压等离子体射流(APPJ)和Pyrosil(R)火焰的比较

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摘要

Polymeric hard/soft combinations consisting of a rigid, thermoplastic substrate and an elastomeric component offer many advantages for plastic parts in industry. Manufactured in one step by multi component injection moulding, the strength of the thermoplastics can be combined with sealing, damping or haptic properties of an elastomer. Bonds of self-adhesive liquid silicone rubber (LSR) on high performance thermoplastics such as polyetheretherketone (PEEK) or polyphenylene sulphide (PPS) are especially interesting e.g. for medical applications due to their outstanding resistance properties. To ensure good adhesion between the two components, surface treatments from an atmospheric pressure plasma jet (APPJ) and a Pyrosil flame are applied. Chemical changes on the thermoplastic surfaces are verified by water contact angle measurement (CA) and X-ray photoelectron spectroscopy (XPS). Plasma treatment causes a decline in water contact angle, indicating the formation of functional groups, especially -OH, on the surface. XPS measurements confirm the increase of oxygen on the surface. Thus, the number of functional groups on the thermoplastic surface is enlarged by plasma treatment, leading to stronger bonding to the organofunctional silanes of the self-adhesive silicone rubber. A thin layer of silanol groups is created by the Pyrosil flame on the thermoplastic substrates, which could be verified by XPS. A hydrophilic behaviour of the coated surface is noticed. Both surface modification methods lead to enhanced adhesion properties of self-adhesive LSR on thermoplastic surfaces. This is confirmed by 90 degrees - peel tests of the injection-moulded composites leading to an increase in peel force by the applied surface modification techniques. (C) 2015 Elsevier Ltd. All rights reserved.
机译:由刚性,热塑性基材和弹性体成分组成的聚合物硬/软组合为工业塑料部件提供了许多优势。通过多组分注塑成型一步制造,热塑性塑料的强度可以与弹性体的密封,阻尼或触觉特性相结合。自粘液体硅橡胶(LSR)在高性能热塑性塑料(例如聚醚醚酮(PEEK)或聚苯硫醚(PPS))上的粘合尤其令人感兴趣。由于其出色的电阻特性,可用于医疗应用。为了确保两个组件之间具有良好的粘合性,使用了大气压等离子射流(APPJ)和Pyrosil火焰进行的表面处理。热塑性表面上的化学变化通过水接触角测量(CA)和X射线光电子能谱(XPS)进行验证。等离子体处理导致水接触角减小,表明在表面上形成官能团,尤其是-OH。 XPS测量结果证实了表面氧气的增加。因此,通过等离子体处理增加了热塑性表面上的官能团的数目,从而导致与自粘硅橡胶的有机官能硅烷的牢固结合。吡咯烷火焰在热塑性基材上会形成一层薄薄的硅烷醇基团,这可以通过XPS进行验证。注意到涂覆表面的亲水行为。两种表面改性方法都可以提高自粘LSR在热塑性表面上的粘合性能。这可以通过注射成型复合材料的90度剥离测试得到证实,该剥离测试通过应用的表面改性技术导致剥离力增加。 (C)2015 Elsevier Ltd.保留所有权利。

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