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首页> 外文期刊>International Journal of Adhesion & Adhesives >Structure and adhesion properties before and after hydrolytic ageing of polyurethane urea adhesives made with mixtures of waterborne polyurethane dispersions
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Structure and adhesion properties before and after hydrolytic ageing of polyurethane urea adhesives made with mixtures of waterborne polyurethane dispersions

机译:用水解尿素粘合剂的水解老化前后的结构和粘合性能,用水性聚氨酯分散体的混合物制成

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摘要

Several waterborne polyurethane urea dispersions (WPUUs) were prepared by mixing different amounts of two waterborne polyurethane urea dispersions made with polyester (WPUU-Polyester) and polycarbonate diol (WPUU-PCD). Their crystallinity, thermal, rheological, viscoelastic and adhesion properties depended on the segmented structure and degree of phase separation which were determined by the different content of the parent dispersions. The PUU films made with WPUU-Polyester + WPUU-PCD mixtures containing more than 50 wt% of WPUU-PCD showed higher hard segments content and lower degree of phase separation, and the addition of 25 wt% of WPUU-Polyester imparted crystallinity to the polyurethane urea due to the interactions between the carbonate groups in the soft segments. The differences in the degree of phase separation and crystallinity of the PUU films made with WPUU-Polyester + WPUU-PCD mixtures were evidenced by the increase in the glass transition temperature associated to the alpha relaxation of the soft segments, and the higher modulus at the cross-over between the storage and loss moduli. Excellent adhesion was obtained in plasticized PVC/WPUU/plasticized PVC joints, and a cohesive failure of PVC was always obtained, irrespective of the composition of WPUU-Polyester + WPUU-PCD mixtures. Furthermore, the adhesion of surface-chlorinated vulcanized styrene-butadiene (SBR) rubber/WPUU + 5 wt% hardener/roughened leather joints were high and similar in all joints and a dominant cohesive failure in the rubber substrate was produced. The accelerated ageing by immersion in water at 70 degrees C during different times showed that the polyurethane urea film and the surface chlorinated vulcanized SBR rubber/WPUU + 5 wt% hardener/roughened leather joint made with WPUU-PCD dispersion were not affected, but noticeable hydrolytic degradation of the ester units in the soft segments was produced in PUU-Polyester and, to a less extent, in PUU-50Polyester/50PCD films and adhesive joints.
机译:通过混合用聚酯(WPUU-聚酯)和聚碳酸酯二醇(WPUU-PCD)制备的不同量的两种水性聚氨酯尿素分散体来制备几种水性聚氨酯尿素分散体(WPUUS)。它们的结晶度,热,流变,粘弹性和粘附性依赖于分段结构和相分离程度,其通过母体分散体的不同含量确定。用WPUU-聚酯+ WPUU-PCD混合物制成的脓膜含有50%以上的WPUU-PCD,表现出更高的硬链段含量和较低的相分离,并加入25wt%的WPUU-聚酯赋予结晶度聚氨酯尿素由于软段中的碳酸盐基团之间的相互作用。通过与软段的α弛豫相关的玻璃化转变温度的增加,通过增加与软段的α弛豫相关的玻璃化转变温度的差异和结晶度的差异,以及较高的模量储存和损耗模量之间的交叉。在增塑PVC / WPUU /塑化的PVC接头中获得优异的粘附性,并且始终获得PVC的内聚失效,而不管WPUU-聚酯+ WPUU-PCD混合物的组成如何。此外,表面氯化硫化苯乙烯 - 丁二烯(SBR)橡胶/ WPUU + 5wt%硬化剂/粗糙皮革接头的粘附性高,并且在所有接头中相似,并产生橡胶基材中的主要内聚失效。在不同时间内以70℃浸入水中加速老化表明,聚氨酯尿素膜和表面氯化硫化SBR橡胶/ WPUU + 5wt%硬化剂/粗糙的皮革接头不受影响,但明显明显在Puu-Polyerster中,在Puu-50polyester / 50pCd膜和粘合接头中,在普 - 聚酯中生产软段中的酯单元的水解降解。

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