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Mechanical properties and material characterization of polysialate structural composites.

机译:聚唾液酸酯结构复合材料的力学性能和材料表征。

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摘要

One of the major concerns in using Fiber Reinforced Composites in applications that are subjected to fire is their resistance to high temperature. Some of the fabrics used in FRC, such as carbon, are fire resistant. However, almost all the resins used cannot withstand temperatures higher than 200°C. This dissertation deals with the development and use of a potassium aluminosilicate (GEOPOLYMER) resin that is inorganic and can sustain more than 1000°C.; The results presented include the mechanical properties of the unreinforced polysialate matrix in tension, flexure, and compression as well as the strain capacities and surface energy. The mechanical properties of the matrix reinforced with several different fabrics were obtained in flexure, tension, compression and shear. The strength and stiffness of the composite was evaluated for each loading condition. Tests were conducted on unexposed samples as well as samples exposed to temperatures from 200 to 1000°C. Fatigue properties were determined using flexural loading.; A study of the effect of several processing variables on the properties of the composite was undertaken to determine the optimum procedure for manufacturing composite plates. The processing variables studied were the curing temperature and pressure, and the post cure drying time required to remove any residual water. The optimum manufacturing conditions were determined using the void content, density, fiber volume fraction, and flexural strength.; Analytical models are presented based on both micro and macro mechanical analysis of the composite. Classic laminate theory is used to evaluate the state of the composite as it is being loaded to determine the failure mechanisms. Several failure criteria theories are considered. The analysis is then used to explain the mechanical behavior of the composite that was observed during the experimental study.
机译:在遭受火灾的应用中使用纤维增强复合材料的主要问题之一是其耐高温性。 FRC中使用的某些织物,例如碳纤维,具有防火性。但是,几乎所有使用的树脂都不能承受高于200°C的温度。本论文涉及无机硅铝硅酸钾(GEOPOLYMER)树脂的开发和使用,该树脂可以承受超过1000°C的温度。给出的结果包括未增强的聚唾液酸酯基体在拉伸,挠曲和压缩方面的机械性能,以及应变能力和表面能。在弯曲,拉伸,压缩和剪切下获得了用几种不同织物增强的基体的机械性能。针对每种加载条件评估复合材料的强度和刚度。对未暴露的样品以及暴露于200至1000°C温度的样品进行测试。使用弯曲载荷确定疲劳性能。对几种加工变量对复合材料性能的影响进行了研究,以确定制造复合板的最佳程序。研究的工艺变量是固化温度和压力,以及除去任何残留水所需的固化后干燥时间。使用空隙率,密度,纤维体积分数和抗弯强度确定最佳制造条件。基于复合材料的微观和宏观力学分析,提出了分析模型。经典的层压理论用于评估复合材料在加载时的状态,以确定破坏机理。考虑了几种失效准则理论。然后,该分析用于解释在实验研究期间观察到的复合材料的机械性能。

著录项

  • 作者

    Foden, Andrew James.;

  • 作者单位

    Rutgers The State University of New Jersey - New Brunswick.;

  • 授予单位 Rutgers The State University of New Jersey - New Brunswick.;
  • 学科 Engineering Civil.; Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 1999
  • 页码 227 p.
  • 总页数 227
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;工程材料学;
  • 关键词

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