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Pressure-sensitive adhesives based on tung oil

机译:基于桐油的压敏粘合剂

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摘要

In this study, we report a new, simple, and solvent-free approach for the development of PSAs from renewable tung oil and diols such as propylene glycol (PG), di(ethylene glycol) (DEG), poly(ethylene glycol) (PEG), poly(propylene glycol) (PPG) and PEG-block-PPG-block-PEG. Tung oil reacted easily and efficiently with maleic anhydride (MA) via the Diels-Alder reaction, producing an adduct of tung oil and MA (TOMA) containing an average of 2.4 anhydride groups per triglyceride. Polymerizations of TOMA with the diols afforded cross-linked carboxylic acid-functionalized polyesters. The polyesters were found to be pressure-sensitive adhesives (PSAs) with a peel strength of 0.3-4.5 N cm(-1), a loop tack of 1-13 N, a shear adhesion of more than 168 h, and a good aging resistance. The PSA properties of the polyesters could be tailored through selection of diols and their amount. Polymerizations of TOMA with short-chain diols such as PG and DEG resulted in PSAs with low peel strength. Polymerizations of TOMA with long-chain PPGs resulted in PSAs with high peel strength and high loop tack. Incorporation of PEGs or PEG blocks into the PSAs resulted in a marked decrease in the peel strength and loop tack of the PSAs. An increase in the molecular weight of PPGs or the amount of PPGs in the reaction mixtures also decreased the peel strength and loop tack of the resulting PSAs. The new PSAs could be based on renewable materials. The preparation of the PSAs did not require any organic solvent or toxic chemical, thus being environmentally friendly.
机译:在这项研究中,我们报告了一种新的,简单和无溶剂的方法,用于从可再生桐油和二醇如丙二醇(PG),二(乙二醇),聚(乙二醇)(乙二醇)( PEG),聚(丙二醇)(PPG)和PEG-嵌段-PPG-BLOP-PEG。桐油通过Diels-Alder反应与马来酸酐(MA)容易,有效地与马来酸酐反应有效,产生每甘油三酯的平均2.4酸酐基团的桐油和MA(TOMA)的加合物。玉米与二醇的聚合,得到交联羧酸官能化聚酯。发现聚酯是压敏粘合剂(PSAS),剥离强度为0.3-4.5 n厘米(-1),环粘性为1-13n,剪切粘合大于168小时,良好的老化反抗。聚酯的PSA性能可以通过选择二醇及其量来定制。具有短链二醇的Toma的聚合如PG和DEG导致具有低剥离强度的PSA。具有长链PPG的TOMA的聚合导致具有高剥离强度和高循环粘性的PSA。将PEG或PEG块掺入PSA中产生的剥离强度和循环粘度的显着降低。反应混合物中PPG的分子量或PPG的量的增加也降低了所得PSA的剥离强度和环粘性。新的PSA可以基于可再生材料。 PSA的制备不需要任何有机溶剂或有毒化学物质,从而环境友好。

著录项

  • 来源
    《RSC Advances》 |2015年第104期|共8页
  • 作者

    Li Anlong; Li Kaichang;

  • 作者单位

    Oregon State Univ Dept Wood Sci &

    Engn Corvallis OR 97331 USA;

    Oregon State Univ Dept Wood Sci &

    Engn Corvallis OR 97331 USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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