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首页> 外文期刊>Journal of Industrial Textiles >In-Situ Polymer Coating of Open Grid Warp Knitted Fabrics for Textile Reinforced Concrete Application
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In-Situ Polymer Coating of Open Grid Warp Knitted Fabrics for Textile Reinforced Concrete Application

机译:纺织增强混凝土应用的开放式网格经编织物原位聚合物涂层

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摘要

This article presents the research work done in the framework of the Collaborative Research Centre - Textile Reinforcement for Structural Strengthening and Retrofitting. Previous results of textile reinforced concrete (TRC) have shown that the mechanical properties of the applied open grid warp knitted fabrics made of alkali-resistant glass filament yarns or carbon filament yarns as reinforcement material have not been utilized to complete satisfaction in the composition with the mineral matrix system. Further we have noticed that the orientation and configuration of the reinforcing fiber material is quite influenced by the handling in the further processing steps, which leads to the need of a sustainable structural stabilization.Different technologies for a subsequent structural stabilization e.g., dip-or spray coating with water-based polymer dispersions, thermal bonding, and laminating have been investigated. The results of these preliminary investigations have been published [2] and in consequence a suitable technology for a structural strengthening process has been selected. The structural strengthening of open grid warp knitted fabrics by means of an in-situ polymer coating process, which is completely integrated, as a modular line concept, into a multi-axial warp knitting machine from Karl Mayer Malimo increases the utilization of mechanical performance in TRC applications. Further the developed structural strengthening process improves the handling properties of the textile fabric. The modular line concept consisting of coating and drying moduless will be described. The influence of process and structure parameters to the mechanical properties of polymer-modifiedrntextile fabrics will be explained and sets the basis for the development and manufacturing of textile fabrics with structural properties adjusted to the requirements of the intended application. The effect of polymer-modified fabrics to the load bearing capacity of TRC will be discussed. To demonstrate the application potential of the developed composite material the TRC has been applied to reinforce a hypar shell structure of a campus building at the University of Applied Sciences in Schweinfurt, Germany.
机译:本文介绍了在协作研究中心框架内进行的研究工作-织物增强结构加固和翻新。纺织品增强混凝土(TRC)的先前结果表明,由耐碱玻璃纤维长丝或碳纤维长丝作为增强材料制成的开放式经纱经编针织物的机械性能尚未被用来完全满足该要求。矿物基质体系。此外,我们还注意到增强纤维材料的方向和配置受后续处理步骤的处理影响很大,这导致需要可持续的结构稳定化。随后进行结构稳定化的不同技术,例如浸涂或喷涂已经研究了水性聚合物分散体的涂层,热粘合和层压。这些初步研究的结果已经发表[2],因此已经选择了一种用于结构加固过程的合适技术。通过原位聚合物涂层工艺对开式网格经编针织物进行结构加固,该工艺作为模块化生产线概念完全集成到Karl Mayer Malimo的多轴经编机中,从而提高了机械性能的利用率。 TRC应用程序。此外,开发的结构加强工艺改善了织物的处理性能。将描述由涂布和干燥模块组成的模块化生产线概念。将解释工艺和结构参数对聚合物改性的纺织织物的机械性能的影响,并为开发和制造具有调整为预期应用要求的结构性能的纺织织物奠定基础。将讨论聚合物改性织物对TRC承载能力的影响。为了证明开发的复合材料的应用潜力,TRC已应用于德国施韦因富特应用科学大学的校园建筑的hypar壳结构加固。

著录项

  • 来源
    《Journal of Industrial Textiles》 |2010年第2期|p.157-169|共13页
  • 作者单位

    Technische Universitaet Dresden, Institute of Textile Machinery and High Performance Material Technology, 01062 Dresden, Germany;

    rnTechnische Universitaet Dresden, Institute of Textile Machinery and High Performance Material Technology, 01062 Dresden, Germany;

    rnTechnische Universitdt Dresden, Institute of Structures and Materials, 01062 Dresden, Germany;

    rnTechnische Universitdt Dresden, Institute of Structures and Materials, 01062 Dresden, Germany;

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

    coating; textile; fabric; concrete;

    机译:涂层;纺织品;布;具体;

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