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Preparation and Properties of Polyester Nanocomposites: Effects of Mixing

机译:聚酯纳米复合材料的制备与性能:混合效应

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A multistep mixing technique to manufacture highly intercalated/exfoliated nanocomposites of layered silicates in thermosetting resins was developed and successfully tested up to 9% nanoparticle content. We investigated the influences of mixing conditions on linear and nonlinear viscoelastic properties of processed clays and polyester suspensions. The effects of shear and mechanical mixing on the state of dispersion and microstructure of the cured nanocomposites were examined by the XRD and TEM techniques. Transient viscosities and linear viscoelastic data for the nanocomposites demonstrated significant enhancement by increasing speed and time of mechanical mixing. The solid state characterization techniques confirm mixed to highly exfoliated and delaminated microstructures were attained by the proposed method. Our observations indicate that the multistage mechanical mixing following a stationary step can be used to produce thermosetting and thermoplastic nanoparticles with the improved properties.
机译:开发了一种用于在热固性树脂中制造层状硅酸盐的高度嵌入/剥离的纳米复合材料的多步混合技术,并成功测试了高达9%的纳米颗粒含量。我们研究了混合条件对加工黏土和聚酯悬浮液的线性和非线性粘弹性的影响。通过XRD和TEM技术研究了剪切和机械混合对固化纳米复合材料的分散状态和微观结构的影响。通过增加机械混合的速度和时间,纳米复合材料的瞬态粘度和线性粘弹性数据得到了显着提高。固态表征技术证实通过所提出的方法获得了混合至高度剥离和分层的微结构。我们的观察结果表明,固定步骤后的多阶段机械混合可用于生产具有改进性能的热固性和热塑性纳米粒子。

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