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Rheology and adhesive properties of filled PIB-based pressure-sensitive adhesives. I. Rheology and shear resistance

机译:填充的PIB基压敏胶粘剂的流变学和胶粘性能。 I.流变性和抗剪切性

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摘要

Two nanosized fillers (fumed silica Rosil-175 up to 20wt% and halloysite nanotubes up to 40wt%) were used to suppress cold flow of polyisobutylene (PIB)-based adhesives. Rheological measurements revealed the presence of the yield stress in the PIB-halloysite system which is indicative of the three-dimensional network formation in the bulk of the matrix. However, further rheology tests identified low strength of the network. In case of Rosil, no yield stress was detected, only gradual increase in the viscosity. Shear bank testing showed 4-5 times increase in the PIB-halloysite system time to failure when 40wt% of halloysite was incorporated into the PIB matrix. Increase in the time to failure for PIB-Rosil systems was over two orders of magnitude - at the Rosil content up to 20wt%. Such superior properties of the Rosil adhesion joints are considered to be the result of Rosil high specific area and low strength of the halloysite nanotubes network.
机译:使用两种纳米级填料(含量高达20wt%的气相法二氧化硅Rosil-175和含量高达40wt%的埃洛石纳米管)来抑制聚异丁烯(PIB)基胶粘剂的冷流。流变学测量揭示了PIB-硅藻土体系中存在屈服应力,这表明在基质的大部分中形成了三维网络。但是,进一步的流变学测试发现网络强度低。对于Rosil,未检测到屈服应力,只是粘度逐渐增加。剪切银行测试显示,当将40wt%的埃洛石掺入PIB基质中时,PIB-无卤石系统失效时间增加4-5倍。 PIB-Rosil系统的故障时间增加了两个数量级以上-Rosil含量高达20wt%。 Rosil粘合接头的这种优越性能被认为是Rosil高比表面积和埃洛石纳米管网络强度低的结果。

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