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首页> 外文期刊>RSC Advances >Active layer thickness across the crack plane and fracture energy consumption in polymer nanocomposites: adhesion against tear strength
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Active layer thickness across the crack plane and fracture energy consumption in polymer nanocomposites: adhesion against tear strength

机译:裂纹面上的活性层厚度和聚合物纳米复合材料的断裂能耗:抗撕裂强度

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摘要

The tear strength of a model methyl methacrylate-butyl acrylate copolymer containing 30 wt% methyl methacrylate (MBC30) and its adhesion strength to poly(ethylene terephthalate) were determined to be 10.2 and 0.26 kN m(-1), respectively. The addition of 5 wt% mono-size, 180 nm in diameter, soft nanoparticles of poly(styrene-co-acrylonitrile) with 30 wt% acrylonitrile (SAN70) through latex blending, followed by drying, amplified the adhesion strength while reducing the tear strength. Mild and harsh annealing of the nanocomposite led to partial and full deterioration of work of failure per unit volume (WoF), resulting in augmented adhesion and tear strengths followed by their severe decline, respectively. The G(0)(1 + phi) model-based partitioning of interfacial and bulk fracture energies of the annealed nanocomposites into intrinsic energy x viscoelastic dissipation led to minimum active layer thicknesses of 0.46 and 33.5 nm across the crack plane, respectively. They implied extension of three consecutive C-C bonds or 70% of the matrix entanglement-to-entanglement strand contour length, respectively, corresponding to maximum WoF.
机译:含有30wt%甲基丙烯酸甲酯(MBC30)的模型甲基丙烯酸甲酯-丙烯酸丁酯共聚物的撕裂强度和对聚对苯二甲酸乙二醇酯的粘合强度分别确定为10.2和0.26 kN m(-1)。通过乳胶共混添加5 wt%的直径为180 nm的单粒径,直径为180 nm的聚(苯乙烯-丙烯腈)和30 wt%的丙烯腈(SAN70)的柔软纳米颗粒,然后干燥,在提高粘合强度的同时降低了撕裂强度。纳米复合材料的温和而严酷的退火导致单位体积失效功的部分和全部降低,导致附着力和撕裂强度增强,然后分别急剧下降。基于G(0)(1 + phi)模型的退火纳米复合材料的界面和整体断裂能向内能x粘弹性耗散的划分分别导致整个裂纹平面的最小活性层厚度分别为0.46和33.5 nm。他们暗示三个连续的C-C键或对应于最大WoF的基质缠结-缠结链轮廓长度的70%的延伸。

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