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Quantifying the synergistic effect of dispersion state and interfacial adhesion contributions on impact strength of core shell rubber-toughened glassy polymers

机译:量化色散状态和界面粘附贡献对芯壳橡胶钢化玻璃聚合物冲击强度的协同作用

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摘要

Artificially made aggregates of core-shell rubber (CSR) nano-particles were latex blended with an emulsion-grade poly(vinyl chloride) (PVC), cast, dried, sintered, and annealed into soft nano-composites. The agglomeration of CSR aggregates and their interfacial adhesion evolution through thermal annealing resulted in temperature-dependent impact strength increase to a maximum, followed by its decrease. Surprisingly, the observed maxima at different annealing temperatures appeared at constant coagulant content to form the aggregates. In addition, the impact strengths of all samples showed a universal linear correlation with the annealing temperature and matrix glass transition disparity, Delta T, over the absolute average size differentiation between the agglomerated CSRs and the matrix primary particles, |Delta D|. The contribution of dispersion state, interfacial adhesion and their interplay was quantified by |Delta D|, Delta T and |Delta T/Delta D| representing 2, 20 and 39 fold impact strength improvement, respectively. The synergistically enhanced impact strength was nicely reflected in a theoretical interlayer model prediction implying double loading of the feed CSR particles.
机译:人工制成的核 - 壳橡胶(CSR)纳米颗粒的聚集体用乳液级聚(氯乙烯)(PVC),浇铸,干燥,烧结和退火为软纳米复合材料。通过热退火的CSR聚集体和它们的界面粘附演化的凝聚导致温度依赖性冲击强度增加到最大值,然后减少。令人惊讶的是,在不同退火温度下观察到的最大值出现在恒定的凝结含量以形成聚集体。此外,所有样品的冲击强度都显示出与退火温度和基质玻璃化转变差异,δT,在附聚的CSR和基质初级颗粒之间的绝对平均尺寸分​​化上的通用线性相关性,δD|。分散状态,界面粘附及其相互作用的贡献| Delta D |,Delta T和| Delta T / Delta D |量化分别表示2,20和39倍冲击强度改善。协同增强的冲击强度在理论层间模型预测中被暗示暗示了饲料CSR颗粒的双重加载的理论层间模型预测。

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  • 来源
    《RSC Advances》 |2016年第4期|共9页
  • 作者单位

    Amirkabir Univ Technol Dept Polymer Engn &

    Color Technol Nano &

    Smart Polymers Ctr Excellence Tehran Iran;

    Amirkabir Univ Technol Dept Polymer Engn &

    Color Technol Nano &

    Smart Polymers Ctr Excellence Tehran Iran;

    Iran Univ Sci &

    Technol Sch Chem Engn Tehran Iran;

    Leibniz Inst Polymer Res Dresden IPF D-01069 Dresden Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
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