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Development and characterization of self-healing carbon fabric/ionomer composite through stitched polymeric artificial muscle.

机译:通过缝合的聚合人工肌肉开发和自修复碳纤维/离聚物复合材料的特性。

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摘要

Typical cracks in composite materials are hard to detect, because they may be very small or occur inside the material. This study investigates the development and characterization of carbon fiber and an ionomer, self-healing, laminate composite, enhanced with stitched artificial muscle elements. Although the carbon fiber is used as a structural reinforcement, the carbon fiber can also act as a resistive heating element in order to activate the healing elements in a Close-Then-Heal (CTH) approach. However in this study, hot air in an oven was used to activate the, SurlynRTM 8940, self-healing matrix. Artificial muscle was prepared from commercial fishing line to stitch reinforce the carbon laminate composite in the Z plane. Holes were drilled into the final composite and the muscle was stitched into the composite for active reinforcement. Differential scanning calorimetry was used to characterize the matrix and fishing line properties. The resulting smart composite was subjected to low velocity impact tests and consequential damage before healing in an oven, followed by three point bending flexure tests. Cracks in the carbon fiber reinforcement formed more easily than expected after impact because the holes were drilled to facilitate the muscle stitching. The matrix material could heal, but the reinforcement carbon could not. Several equipment issues and failures limited the amount of samples that could be created to continue testing with new parameters.
机译:复合材料中的典型裂纹很难检测到,因为它们可能很小或发生在材料内部。这项研究调查了碳纤维和离聚物,自修复,层压复合材料以及缝合的人造肌肉元素增强后的开发和表征。尽管将碳纤维用作结构增强材料,但碳纤维还可以充当电阻加热元件,以便以“先治疗后治愈”(CTH)的方式激活愈合元件。但是,在这项研究中,使用了烤箱中的热空气来激活SurlynRTM 8940自愈基质。从商业捕鱼线制备人造肌肉,以在Z平面上缝合增强碳层压板复合材料。在最终的复合材料上钻孔,然后将肌肉缝合到复合材料中以进行主动加固。差示扫描量热法用于表征基质和钓线特性。所得智能复合材料在烤箱中固化之前要经受低速冲击测试和相应的损坏,然后进行三点弯曲挠曲测试。碳纤维增强材料中的裂纹比撞击后的裂纹更容易形成,因为钻孔是为了促进肌肉缝合。基质材料可以治愈,但增强碳无法治愈。几个设备问题和故障限制了为继续使用新参数进行测试而可以创建的样本数量。

著录项

  • 作者

    Gabriel, Mark Joseph.;

  • 作者单位

    Southern University and Agricultural and Mechanical College.;

  • 授予单位 Southern University and Agricultural and Mechanical College.;
  • 学科 Materials science.;Mechanics.
  • 学位 M.Eng.
  • 年度 2015
  • 页码 87 p.
  • 总页数 87
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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