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Interaction of tackifier resins with water-based and olefinic polymers.

机译:增粘剂树脂与水基和烯烃聚合物的相互作用。

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摘要

The objective of this research was to investigate the interaction of tackifier resins in water-based and olefinic polymers for potential pressure sensitive adhesive applications. The first part of this research work was focused on evaluating the usefulness of olefinic block copolymer blends with two amorphous polyolefins (atactic propylene homopolymer and ethylene-propylene copolymer) as potential base polymers for hotmelt pressure-sensitive adhesives. Unsaturated and saturated hydrocarbon resins were studied as potential compatibilizing agents and rheology modifiers. Results show that the chemistry of hydrocarbon resins definitely influence the miscibility of the olefinic block polymer and amorphous polyolefin blends. Ethylene-propylene amorphous copolymer based blends seems to show better miscibility characteristics. Based on the learning from blend miscibility studies, we have successfully made pressure-sensitive adhesives for disposable diaper construction application with olefinic block copolymer/ethylene-propylene amorphous copolymer blends, containing unsaturated hydrocarbon resins and saturated hydrocarbon resins. These olefinic adhesives showed good sprayability characteristics, when applied using air assisted spiral spray equipment (Acumeter Spray Coater) and they showed good adhesive peel properties, which were comparable to the SBS based control.;The second part of the study was focused on the evaluation of natural rubber latex-based pressure-sensitive adhesives (PSA) containing three different C5 aliphatic tackifier dispersions with different softening points. Natural rubber-based, water-borne PSA wet rheology (rheology in liquid state) was correlated to morphological analysis on a coating and converting stand point. Dry adhesive rheology was also studied and was then correlated to adhesive properties at different conditions. It has been learned that the type and amount of dispersing agents in tackifier dispersions has a major influence in wet rheology of the PSA formulations. Softening point of the dispersion seems to influence the dry adhesive rheology and adhesive properties such as peel, tack and shear.
机译:这项研究的目的是研究增粘剂树脂在水基和烯烃聚合物中的相互作用,以用于潜在的压敏胶应用。这项研究工作的第一部分集中于评估烯烃嵌段共聚物与两种无定形聚烯烃(无规丙烯均聚物和乙烯-丙烯共聚物)共混物作为热熔压敏胶粘剂潜在基础聚合物的有用性。研究了不饱和和饱和烃树脂作为潜在的相容剂和流变改性剂。结果表明,烃类树脂的化学性质无疑会影响烯烃嵌段聚合物和无定形聚烯烃混合物的混溶性。基于乙烯-丙烯无定形共聚物的共混物似乎显示出更好的混溶性。基于对共混物混溶性研究的学习,我们成功地制造了含有不饱和烃树脂和饱和烃树脂的烯烃嵌段共聚物/乙烯-丙烯无定形共聚物共混物,用于一次性尿布建筑应用的压敏胶。当使用空气辅助螺旋喷涂设备(Acumeter Spray Coater)施用时,这些烯烃粘合剂表现出良好的喷涂性,并且它们具有良好的粘合剂剥离性能,可与基于SBS的对照物相媲美。天然橡胶胶乳基压敏胶(PSA),其中包含三种具有不同软化点的不同C5脂族增粘剂分散体。基于天然橡胶的水性PSA湿流变学(液态流变学)与涂层的形态分析和转化立场相关。还研究了干式胶粘剂的流变性,然后将其与不同条件下的胶粘剂性能相关联。已经了解到,增粘剂分散体中分散剂的类型和数量对PSA制剂的湿流变学具有重大影响。分散体的软化点似乎会影响干胶的流变性和胶粘性能,例如剥离,粘性和剪切力。

著录项

  • 作者单位

    North Dakota State University.;

  • 授予单位 North Dakota State University.;
  • 学科 Chemistry Polymer.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 179 p.
  • 总页数 179
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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