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Study on Synthesis of Polyurethane-Epoxy Composite Emulsion

机译:聚氨酯-环氧复合乳液的合成研究

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The stable polyurethane-epoxy composite emulsion with the epoxy-amine oligomer (DEA-EP) and the epoxy resin oligomer has been prepared by step-growth polymerization and controlled crosslinking technique. The emulsion forming transparent films can be cured at room temperature with trimethylolpropane tris (I-ethyleneimine) properties (TMPTA-AZ). The DEA-EP structure and its reaction with urethane prepolymers were proved by Fourier transform infrared spectra (FTIR). The studies on particle size, the particle size distribution, viscosity, and the films' transmittance (Tr) indicated that both trimethylol propane (TMP) and DEA-EP contributed to improving the resin blends' compatibility and reducing the viscosity. The epoxy resin content can increase up to 20.0 wt % (based on the total content of the polyurethane and epoxy resin) and the emulsion was still stable. The data from the tensile test experiments showed that with the epoxy content increasing, the tensile strength (sigma(b)) and Young's modulus were proportionately raised, but the elongation at break (epsilon(b)) decreased. Tensile tests also revealed that introducing TMPTA-AZ as an outside-crosslinker can increase the tensile strength. By adding 0.3 wt % of TMPTA-AZ, the epsilon(b) reduced from 429% to 371% and the sigma(b) increased from 4.4 to 13.73 MPa; by adding 1.8 wt % of TMPTA-AZ, epsilon(b) of the film was 67% of epsilon(b) of the film with 0.3 wt % of TMPTA-AZ, but its sigma(b) was 24.77 MPa and 180% of sigma(b) of the film with 0.3 wt % of TMPTA-AZ. The cured films possessed excellent water and toluene resistance: water uptake (48 h, 3.1%; degree of curing: 70%), toluene uptake (210 h, 8%. degree of curing: 70%). Better properties of the composite emulsion will confer it as a potential application in low volatile industrial coatings.
机译:通过逐步增长聚合和可控交联技术制备了具有环氧胺低聚物(DEA-EP)和环氧树脂低聚物的稳定的聚氨酯-环氧复合乳液。可以在室温下以三羟甲基丙烷三(I-亚乙基亚胺)性能(TMPTA-AZ)固化形成乳液的透明膜。通过傅里叶变换红外光谱(FTIR)证明了DEA-EP结构及其与氨基甲酸酯预聚物的反应。对粒度,粒度分布,粘度和薄膜透射率(Tr)的研究表明,三羟甲基丙烷(TMP)和DEA-EP均有助于改善树脂共混物的相容性并降低粘度。环氧树脂的含量最多可以增加20.0 wt%(基于聚氨酯和环氧树脂的总含量),并且乳液仍然稳定。拉伸试验实验的数据表明,随着环氧含量的增加,拉伸强度(sigma(b))和杨氏模量成比例地增加,但断裂伸长率(epsilon(b))降低。拉伸试验还表明,引入TMPTA-AZ作为外部交联剂可以提高拉伸强度。加入0.3%(重量)的TMPTA-AZ,ε(b)从429%降低到371%,σ(b)从4.4提高到13.73 MPa。通过添加1.8 wt%的TMPTA-AZ,膜的ε(b)占膜的epsilon(b)的0.3%(重量)的TMPTA-AZ,但其σ(b)为24.77 MPa和180%具有0.3 wt%的TMPTA-AZ的薄膜的sigma(b)。固化膜具有优异的耐水和甲苯性能:吸水量(48小时,3.1%;固化度:70%),甲苯吸水量(210小时,8%。固化度:70%)。复合乳液的更好性能将使其在低挥发性工业涂料中具有潜在的应用前景。

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