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The solution properties and membrane properties of polydimethylsiloxane waterborne polyurethane blended with the waterborne polyurethanes of various kinds of soft segments

机译:聚二甲基硅氧烷水性聚氨酯与各种软链段水性聚氨酯共混的溶液性能和膜性能

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This research utilized different types of soft segments such as ester type Polyol (polycaprolactone, PCL), and ether type Polyol (polyethylene glycol, PEG; Polypropylene glycol, PPG; polytetramethylene glycol, PTMG) to synthesize various ester and ether types of waterborne polyurethanes (WBPUs). Furthermore, we used polydimethylsiloxane (PDMS) as a soft segment to synthesize PDMS-PU, which in different amounts was blended with various Kinds of WBPU to study the neat WBPU and the blended WBPU solution properties and membrane surface structures. In PDMS-PU blending with WBPUs. no matter which kinds of WBPU are, the particle sizes of solution still increase with the increase of the blending amount of PDMS-PU. Among the various WBPUs, the ester type PCL1250 series, its particle sizes is increased with the increase of blending amount of PDMS-PU. and is further lamer than the particle size of neat WBPU. Except C1250 series, the WBPU solution blended with 5% PDMS-PU has a slight increase of critical Surface tension, and subsequently declines following 5%. With an increase of PDMS-PU content, the contact angle of various WBPU to Nylon fabrics decreases. With an increase of molecular weight of PEG soft segment, the contact angle of WBPU solution was larger. The C1250 of ester type WBPU has the largest a drop of extent for the contact angle. In addition, the contact angle of water to the C waterborne PU membrane is increased greatly and immediately, when there is small amount of PDMS-PU blending. In the surface structure of ATR-FTIR analysis, except the ester type C1250 series, the Si content on the membrane surface suddenly increases, getting close to the Si value of single PDMS-PU. (c) 2005 Elsevier B.V. All rights reserved.
机译:这项研究利用了不同类型的软链段,例如酯型多元醇(聚己内酯,PCL)和醚型多元醇(聚乙二醇,PEG;聚丙二醇,PPG;聚丁二醇,PTMG)来合成各种酯和醚类型的水性聚氨酯( WBPU)。此外,我们使用聚二甲基硅氧烷(PDMS)作为软链段来合成PDMS-PU,将其以不同的量与各种WBPU混合以研究纯净WBPU以及混合后的WBPU溶液性能和膜表面结构。在PDMS-PU中与WBPU混合。无论是哪种WBPU,随着PDMS-PU掺混量的增加,溶液的粒径仍会增加。在各种WBPU中,酯类PCL1250系列的粒径随PDMS-PU的掺混量增加而增加。并且比纯净WBPU的粒径还要大。除C1250系列外,与5%PDMS-PU混合的WBPU解决方案的临界表面张力略有增加,随后在5%以下下降。随着PDMS-PU含量的增加,各种WBPU与尼龙织物的接触角减小。随着PEG软链段分子量的增加,WBPU溶液的接触角变大。酯型WBPU的C1250的接触角下降幅度最大。此外,当PDMS-PU的掺混量很少时,水与C水性PU膜的接触角会立即大大增加。在ATR-FTIR分析的表面结构中,除酯型C1250系列外,膜表面的Si含量突然增加,接近单个PDMS-PU的Si值。 (c)2005 Elsevier B.V.保留所有权利。

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