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Characterization of interfacial stress transfer ability of particulate cellulose composite materials

机译:颗粒状纤维素复合材料界面应力传递能力的表征

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摘要

Composites with cellulose reinforcements are steadily gaining increased use. The stress transfer ability between reinforcement and polymer matrix has a strong influence on mechanical properties like strength and fracture toughness. This work presents a method to assess the stress transfer ability between cellulose and polymer matrix from a model material with cellulose spheres embedded in a polymer matrix. Such a material show smaller variability compared with composites based on natural cellulose fibres, and is less cumbersome than single fibre tests with regard to interfacial characterization. Measured elastic moduli of particulate composites is compared with predicted values from a micromechanical model based on a composite sphere assembly in a self-consistent scheme with only a spring constant of an imperfect interface as fitting parameter expressed in Pa/m. This interface parameter is identified through inverse modelling and used to quantify stress-transfer ability of cellulose/polylactide and cellulose/polystyrene composite interfaces. A higher degree of interfacial interaction was found for the former. This ranking was corroborated by adhesive force measurements using a micrometre sized cellulose sphere attached to the end of a cantilever in an atomic force microscope. With the model microstructure of a cellulose-sphere composite, an interfacial efficiency parameter can be backed out from stiffness measurements to be used in e.g. ranking of different fibre surface treatments and choice of matrix in the development of stronger natural-fibre composites.
机译:具有纤维素增强材料的复合材料的使用稳步增长。增强材料和聚合物基体之间的应力传递能力对机械性能(如强度和断裂韧性)有很大影响。这项工作提出了一种方法,用于评估纤维素材料嵌入聚合物基体中的模型材料在纤维素和聚合物基体之间的应力传递能力。与基于天然纤维素纤维的复合材料相比,这种材料显示出较小的可变性,并且在界面表征方面比单纤维测试麻烦。将颗粒复合材料的测得弹性模量与基于复合球体组件的微机械模型的预测值进行比较,采用自洽方案,仅以不完美界面的弹簧常数作为拟合参数,以Pa / m表示。该界面参数通过逆模型识别,并用于量化纤维素/聚丙交酯和纤维素/聚苯乙烯复合界面的应力传递能力。前者的界面相互作用程度更高。该排名通过使用附着在原子力显微镜中悬臂末端的微米级纤维素球的粘附力测量得到证实。利用纤维素-球形复合材料的模型微观结构,可以从刚度测量中回退界面效率参数,以用于例如在开发更强的天然纤维复合材料时,对不同纤维表面处理的排名和基质的选择。

著录项

  • 来源
    《Mechanics of materials》 |2011年第11期|p.693-704|共12页
  • 作者单位

    Uppsala University, Department of Engineering Sciences, The Angstrom Laboratory, Box 534, SE-75121 Uppsala, Sweden;

    Innvenaa AB, Packaging Solutions, Box 5604, SE-11486 Stockholm, Sweden;

    Innvenaa AB, Packaging Solutions, Box 5604, SE-11486 Stockholm, Sweden;

    KTH - Royal Institute of Technology, Department of Fibre and Polymer Technology, School of Chemical Science and Engineering, SE-10044 Stockholm, Sweden;

    KTH - Royal Institute of Technology, Department of Fibre and Polymer Technology, School of Chemical Science and Engineering, SE-10044 Stockholm, Sweden;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    interfaces; stress transfer; composite materials; cellulose spheres; micromechanics; adhesion;

    机译:接口;压力转移复合材料;纤维素球;微力学附着力;

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