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Preparation and bending properties of three dimensional braided single poly (lactic acid) composite

机译:三维编织单聚乳酸复合材料的制备及弯曲性能

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摘要

New three dimensional (3D) braided single poly (lactic acid) composites (PLA-SPCs) were obtained by combining 3D and five (5)-direction braiding technique and hot-compression technical process. 3D and 5-direction braided preforms with different braiding angles, thicknesses and fiber volume fractions were prepared. Preforms were preheated in the specially designed die system in order to make all of the fibers partially melted. In the next stage, the preforms were consolidated under a certain pressure (from 7.8 to 10 MPa) at temperatures ranging from 130 up to 150℃. Under the controlled processing conditions, one part of fiber body formed matrix while the other part retained its fibrous form. At the same consolidation temperature, the maximum bending stress values resulted to be substantially dependent on the fiber volume fraction of PLA-SPCs, while the bending modulus values were largely subjected to the fiber content in the length direction. The increases of consolidation pressure gave rise to better fusion of neighboring fibers with the result that the maximum stress and modulus were increased. As the consolidation temperature increases, the fusion bonding was improved, the bending failure feature was converted from plastic to brittle, both maximum bending stress and modulus values were increased. It is expected that this study could provide a new approach for the manufacture of high-performance single polymer composites (SPCs) by using thermoplastic polymer fibers.
机译:通过将3D和五(5)方向编织技术和热压技术工艺相结合,获得了新的三维(3D)编织单聚(乳酸)复合材料(PLA-SPC)。制备具有不同编织角度,厚度和纤维体积分数的3D和5向编织预成型坯。在特殊设计的模具系统中对预成型件进行预热,以使所有纤维部分熔化。在下一阶段,将预成型坯在130至150℃的一定压力(7.8至10 MPa)下固结。在受控的加工条件下,纤维主体的一部分形成基质,而另一部分保留其纤维形式。在相同的固结温度下,最大弯曲应力值基本上取决于PLA-SPC的纤维体积分数,而弯曲模量值在长度方向上很大程度上受到纤维含量的影响。固结压力的增加使相邻纤维更好地融合,结果使最大应力和模量增加。随着固结温度的升高,熔合性能得到改善,弯曲破坏特征从塑料转变为脆性,最大弯曲应力和模量值均增加。期望这项研究可以为使用热塑性聚合物纤维制造高性能单一聚合物复合材料(SPC)提供一种新方法。

著录项

  • 来源
    《Composites》 |2013年第9期|106-113|共8页
  • 作者单位

    Key Laboratory of Advanced Textile Composite Materials of Ministry of Education, Institute of Textile Composite, Tianjin Polytechnic University, Tianjin 300387, China;

    Key Laboratory of Advanced Textile Composite Materials of Ministry of Education, Institute of Textile Composite, Tianjin Polytechnic University, Tianjin 300387, China;

    Department of Traumatology, Tianjin Hospital, Tianjin 300211, China;

    Department of Textiles and Clothing, Anhui Polytechnic University, Wuhu, Anhui 241000, China;

    Key Laboratory of Advanced Textile Composite Materials of Ministry of Education, Institute of Textile Composite, Tianjin Polytechnic University, Tianjin 300387, China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    A. 3-Dimensional reinforcement; B. Mechanical properties; E. Braiding; E. Compression moulding;

    机译:A.三维加固;机械性能;E.编织;E.压缩成型;

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