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Experimental assessment of micromechanical models for fragmentation analysis of thin metal oxide coatings on polymer films under uniaxial tensile deformation

机译:单轴拉伸变形下聚合物膜薄金属氧化物涂层碎片分析微机械模型的实验评价

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摘要

The barrier properties of metal oxide coatings deposited on polymer substrates is of interest in packaging applications for beverages and food. The durability of the coatings is compromised mechanically due to brittleness of the coatings, leading to multiple cracking when deformed. This cracking behavior has been investigated in situ for atomic layer deposited coatings of TiO2 (6 and 20 nm thick) and mixed oxides of TiO2 and Al2O3 (4 and 20 nm thick) on polyethylene terephthalate substrate films by observing multiple cracking under uniaxial tension. Two key models to identify cohesive and adhesive properties from the fragmentation data have been implemented, and their differences are discussed in light of the new experimental data. Such material properties include the Weibull strength distribution of the coating, the interfacial shear strength, the strength at crack saturation, and fracture toughness at crack onset and at saturation. These properties can be useful for materials selection and possibly for design simulations, when the unaccounted effects like finite deformation and substrate yielding do not take over. A significantly weaker interface and cohesive strength was observed for the thinner mixed-oxide coating, where the dimensions of the material heterogeneities were of the same order as the coating thickness. These dimensions seem to be the limiting factor of how thin coatings can be made without a major loss in structural integrity.
机译:沉积在聚合物基材上的金属氧化物涂层的阻隔性能对饮料和食物的包装应用感兴趣。由于涂层的脆性,涂层的耐久性受到机械地受损,导致变形时的多个裂纹。通过在单轴张力下观察多裂解,已经研究了TiO2(6和20nm厚)和TiO2和Al 2 O 3(4和20nm厚)的混合氧化物的原子层沉积涂层的原位对聚对苯二甲酸乙二醇酯基底膜的混合氧化物。已经实施了从碎片数据识别粘性和粘合性能的两个关键模型,鉴于新的实验数据讨论了它们的差异。这种材料特性包括涂层的涂层强度分布,界面剪切强度,裂纹饱和度的强度,以及在裂纹发作和饱和度下的断裂韧性。当有限变形和基材产生的效果不接管时,这些特性可能对材料选择和设计模拟有用。对于较薄的混合氧化物涂层,观察到显着较弱的界面和内聚强度,其中材料异质性的尺寸与涂层厚度相同。这些尺寸似乎是如何制造薄涂层的限制因素,而没有结构完整性的重大损失。

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