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植物基油性丙烯酸盐乳液在多底物粘接胶粘剂中的应用。

Plant Oil-Based Acrylic Latexes towards Multisubstrate Bonding Adhesives Applications.

机构信息

Department of Organic Chemistry, Institute of Chemistry and Chemical Technologies, Lviv Polytechnic National University, 79013 Lviv, Ukraine.

Department of Coatings and Polymeric Materials, North Dakota State University, Fargo, ND 58102, USA.

出版信息

Molecules. 2022 Aug 13;27(16):5170. doi: 10.3390/molecules27165170.

Abstract

To investigate the utility of acrylic monomers from various plant oils in adhesives manufacturing, 25-45 wt. % of high oleic soybean oil-based monomer (HOSBM) was copolymerized in a miniemulsion with commercially applied butyl acrylate (BA), methyl methacrylate (MMA), or styrene (St). The compositions of the resulting ternary latex copolymers were varied in terms of both "soft" (HOSBM, BA) and "rigid" (MMA or St) macromolecular fragments, while total monomer conversion and molecular weight of copolymers were determined after synthesis. For most latexes, results indicated the presence of lower and higher molecular weight fractions, which is beneficial for the material adhesive performance. To correlate surface properties and adhesive performance of HOSBM-based copolymer latexes, contact angle hysteresis (using water as a contact liquid) for each latex-substrate pair was first determined. The data showed that plant oil-based latexes exhibit a clear ability to spread and adhere once applied on the surface of materials differing by polarities, such as semicrystalline polyethylene terephthalate (PET), polypropylene (PP), bleached paperboard (uncoated), and tops coated with a clay mineral paperboard. The effectiveness of plant oil-based ternary latexes as adhesives was demonstrated on PET to PP and coated to uncoated paperboard substrates. As a result, the latexes with high biobased content developed in this study provide promising adhesive performance, causing substrate failure instead of cohesive/adhesive break in many experiments.

摘要

为了研究各种植物油脂的丙烯酸单体在胶粘剂制造中的应用,将 25-45wt%高油酸大豆油基单体(HOSBM)与商业应用的丁酯(BA)、甲基丙烯酸甲酯(MMA)或苯乙烯(St)在 miniemulsion 中共聚。所得三元胶乳共聚物的组成在“软”(HOSBM、BA)和“硬”(MMA 或 St)大分子片段方面有所不同,而共聚物的总单体转化率和分子量则在合成后进行测定。对于大多数乳胶,结果表明存在较低和较高分子量的分数,这有利于材料的粘合性能。为了将 HOSBM 基共聚物乳胶的表面性能和粘合性能相关联,首先确定了每种乳胶-基材对的接触角滞后(使用水作为接触液体)。数据表明,植物油基乳胶一旦应用于极性不同的材料表面,如半结晶聚对苯二甲酸乙二醇酯(PET)、聚丙烯(PP)、漂白纸板(未涂层)和涂有粘土矿物纸板的顶部,就具有明显的扩展和粘合能力。植物油基三元乳胶作为胶粘剂在 PET 对 PP 和涂层对未涂层纸板基材上的有效性得到了证明。结果,本研究中开发的具有高生物基含量的乳胶提供了有前景的粘合性能,导致在许多实验中基材失效而不是内聚/粘合失效。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b9a8/9416654/6dd298ecb717/molecules-27-05170-g001.jpg

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