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Flattening of latex film surface: Theory and experiments by atomic force microscopy

机译:乳胶薄膜表面的平整:原子力显微镜的理论和实验

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A model is proposed to describe the flattening of latex film surfaces when the film is annealed for various periods of time above the glass-transition temperature, Tg, of the polymer. This model is based on the excess pressure produced by the curvature of the particles on the film surface, which acts as driving force in surface film flattening, and the polymer stress growth viscosity, μ(t), which is the resistance to particle deformation and acts against surface film flattening. To test the model, surfactant-free poly(butyl methacrylate) (PBMA) latexes were synthesized. Dry films were annealed at 70 °C, i.e., about 35 °C above the PBMA Tg, for various periods of time, and for each annealing time the film roughness was measured by atomic force microscopy (AFM). The decrease of the film roughness versus annealing time measured by AFM is compared to the decrease predicted from the model. The model is also compared to data obtained with latex particles stabilized with sodium dodecyl sulfate which decreases the polymer surface tension.
机译:提出了一个模型来描述当薄膜在高于聚合物的玻璃化转变温度Tg的各个时间段内退火时,乳胶薄膜表面的平坦度。该模型基于膜表面上颗粒曲率所产生的过大压力(该压力是表面膜平坦化的驱动力)以及聚合物应力增长粘度μ(t)(即对颗粒变形和变形的抵抗力)。防止表面膜变平。为了测试该模型,合成了无表面活性剂的聚甲基丙烯酸丁酯(PBMA)胶乳。将干膜在70°C(即,高于PBMA Tg约35°C)下退火一段时间,并在每个退火时间内通过原子力显微镜(AFM)测量膜的粗糙度。将通过AFM测量的膜粗糙度相对于退火时间的降低与从模型预测的降低进行比较。还将该模型与用十二烷基硫酸钠稳定的乳胶颗粒获得的数据进行比较,该乳胶颗粒降低了聚合物的表面张力。

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