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Structural evaluation and life cycle assessment of a transparent composite facade system using biofiber composities and recyclable polymers.

机译:使用生物纤维复合材料和可回收聚合物的透明复合幕墙系统的结构评估和生命周期评估。

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摘要

A composite facade system concept was developed at the University of Michigan by Professor Harry Giles that considered the use of various transparent and composite materials in building construction. Particular aspects of this transparent composite facade system (TCFS) were investigated in this dissertation and involved the use of recyclable polymers and biofiber composites. This dissertation addresses research questions related to structural and environmental performance of the transparent composite facade system (TCFS) compared to a glass curtain all system (GCWS). In order to better understand the context for the TCFS and establish performance evaluation methods, an extensive literature review was conducted focusing on material performance, structural performance requirements, life cycle assessment (LCA) techniques, composite panel principles, product surveys and building codes. Structural design criteria were established for the TCFS with respect to the strength and stiffness requirements of the International Building Code (IBC). A new testing frame was fabricated and installed at the architectural department of the University of Michigan to conduct static and impact tests in accordance with Safety Performance Specifications and Methods of Test (ANSI Z97.1). Initial static tests were carried out to measure bending stiffness of TCFS specimens in order to compare the results with theoretical predictions. Impact tests were also carried out to examine whether TCFS specimens conformed to the safety glazing criteria specified in ANSI Z97.1. In addition, a comparative LCA of a TCFS and a GCWS was performed on each system to assess their respective environmental implications.;Structural testing results indicated that the bending stiffness according to simple beam theory is in agreement with measured stiffness under two-edge supported conditions. Impact tests demonstrated that TCFS specimens satisfy the Class B of the safety glazing requirements of ANSI Z97.I. Comparative LCA results showed that the total life cycle energy of the TCFS was estimated to be 93% of that of the uncoated GCWS and the total emission of kg CO2 equivalent for the TCFS was determined as 89% of the uncoated GCWS. The impact associated with transportation and the end-of-life management was estimated to be insignificant in this study.
机译:哈里·吉尔斯(Harry Giles)教授在密歇根大学提出了一种复合外墙系统的概念,该概念考虑了在建筑施工中使用各种透明和复合材料的方法。本文研究了这种透明复合外墙体系的特殊方面,涉及可回收聚合物和生物纤维复合材料的使用。与玻璃幕墙全系统(GCWS)相比,本论文解决了与透明复合幕墙系统(TCFS)的结构和环境性能有关的研究问题。为了更好地了解TCFS的背景并建立性能评估方法,对材料性能,结构性能要求,生命周期评估(LCA)技术,复合面板原理,产品调查和建筑规范进行了广泛的文献综述。根据国际建筑规范(IBC)的强度和刚度要求,为TCFS建立了结构设计标准。密歇根大学的建筑系制造并安装了一个新的测试框架,以根据安全性能规范和测试方法(ANSI Z97.1)进行静态和冲击测试。为了将结果与理论预测相比较,进行了初始静态测试以测量TCFS试样的弯曲刚度。还进行了冲击试验,以检查TCFS样品是否符合ANSI Z97.1规定的安全玻璃标准。此外,在每个系统上进行了TCFS和GCWS的比较LCA,以评估它们各自的环境影响。;结构测试结果表明,根据简单梁理论的弯曲刚度与在两边支撑条件下测得的刚度一致。冲击试验表明,TCFS样品满足ANSI Z97.I安全玻璃要求的B级。比较的LCA结果表明,TCFS的总生命周期能量估计为未涂覆的GCWS的93%,而TCFS的千克二氧化碳当量的总排放量被确定为未涂覆的GCWS的89%。在本研究中,估计与运输和报废管理相关的影响不明显。

著录项

  • 作者

    Kim, Kyoung-Hee.;

  • 作者单位

    University of Michigan.;

  • 授予单位 University of Michigan.;
  • 学科 Architecture.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 179 p.
  • 总页数 179
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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