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Studies on Synthesis and Characterization of Aqueous Hybrid Silicone-Acrylic and Acrylic-Silicone Dispersions and Coatings. Part I

机译:杂交硅氧烷 - 丙烯酸水溶液和丙烯酸硅树脂分散体和涂层的合成与表征研究。第I部分

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摘要

The objective of the study was to investigate the effect of the method of synthesis on properties of aqueous hybrid silicone-acrylic (SIL-ACR) and acrylic-silicone (ACR-SIL) dispersions. SIL-ACR dispersions were obtained by emulsion polymerization of mixtures of acrylic and styrene monomers (butyl acrylate, styrene, acrylic acid and methacrylamide) of two different compositions in aqueous dispersions of silicone resins synthesized from mixtures of silicone monomers (octamethylcyclotetrasiloxane, vinyltriethoxysilane and methyltriethoxysilane) of two different compositions. ACR-SIL dispersions were obtained by emulsion polymerization of mixtures of the same silicone monomers in aqueous dispersions of acrylic/styrene copolymers synthesized from the same mixtures of acrylic and styrene monomers, so the compositions of ACR and SIL parts in corresponding ACR-SIL and SIL-ACR hybrid dispersions were the same. Examination of the properties of hybrid dispersions (particle size, particle structure, minimum film forming temperature, Tg of dispersion solids) as well as of corresponding coatings (contact angle, water resistance, water vapour permeability, impact resistance, elasticity) and films (tensile strength, elongation at break, % swell in toluene), revealed that they depended on the method of dispersion synthesis that led to different dispersion particle structures and on composition of ACR and SIL part. Generally, coatings produced from hybrid dispersions showed much better properties than coatings made from starting acrylic/styrene copolymer dispersions.
机译:该研究的目的是探讨合成方法对含水混合硅氧烷 - 丙烯酸(SIL-ACR)和丙烯酸 - 硅氧烷(ACR-SIL)分散性的性质的影响。通过两种不同组合物的丙烯酸和苯乙烯单体(丙烯酸丁酯,苯乙烯,丙烯酸和甲基丙烯酸丁基丙烯酸和甲基丙烯酰基甲基丙烯酰胺)在由硅氧烷单体(八甲基环四硅氧烷,乙烯基三乙氧基硅烷和甲基三甲氧基甲硅烷)合成的硅树脂水溶液中的两种不同组合物中的两种不同组合物中的两种不同组合物的乳液聚合获得的SIL-ACR分散体。两种不同的组成。通过与丙烯酸和苯乙烯单体的相同混合物合成的丙烯酸/苯乙烯共聚物的相同硅氧烷单体中相同硅氧烷单体中的混合物的混合物的乳液聚合获得ACR-SIL分散体,因此ACR和SIL和SIL中的ACR和SIL零件的组合物-Acr混合分散体是相同的。检查混合分散体的性质(粒度,颗粒结构,最小膜形成温度,分散固体Tg)以及相应的涂层(接触角,耐水性,水蒸气渗透性,抗冲击性,弹性)和薄膜(拉伸强度,断裂处的伸长率,甲苯溶胀),揭示它们依赖于分散合成的方法,其导致不同的分散颗粒结构和ACR和SIL部分的组成。通常,由杂交分散体产生的涂层显示出比由原丙烯酸/苯乙烯共聚物分散体制成的涂层的更好的性能。

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