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Non-linear finite element analysis of FRP-precast concrete sandwich panels.

机译:FRP预制混凝土夹芯板的非线性有限元分析。

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摘要

Precast insulated concrete sandwich panels have been used with proven success in commercial building application as wall elements to provide both vertical and lateral strength and thermal and environmental protection. Various configurations and materials have been used to provide certain degrees of strength, thermal resistance and composite action. The mechanics of the sandwich panel rely on the transfer of compressive and tensile forces due to flexure via shear through the web connectors. These web connectors have varied from steel wire trusses to carbon fiber composite grid trusses to solid concrete zones. For optimum thermal performance the connectors not providing a thermal bridge are best suited. For optimum strength and stiffness performance the shear connectors that create the highest degree of composite action and anchorage in the concrete zones shall be used. Furthermore, if the insulated concrete sandwich panels can be better understood, developed and tested in the horizontal application rather than as a wall element, they can be used for roof and possibly floor applications. This will provide environment and thermal resistance and required strength and stiffness.;This study investigates the design and testing of several scaled test sandwich panel configurations using solid web FRP plate shear connectors. The stiffness, strength and degree of composite action for each set of panels is calculated and compared and finally 2 full scale test panels are developed and tested. Along with testing and calculations, numerical modeling or finite element analysis is employed to show correlation between the test results for future development of an analytical model. Precast concrete sandwich panel engineering performance varying depending on the degree of composite action of its constituent materials and strength of properties. Employing a nonlinear numerical solver that can capture the quasi-static response of the panels under flexural loading is valuable and desirable for future development.;These test panels, both scaled and full-scale show adequate results for strength, stiffness and degree of composite action to justify further development and research into their use as roof or floor structural support members. Long term creep effects have also been investigated in this study, however further creep studies are warranted and recommended. Finally, these panels are not limited to the use of residential and commercial application, rather they have the potential as suitable candidates for structures intended to provide blast and/or accidental explosion protection.
机译:预制绝缘混凝土夹心板已在商业建筑中成功地用作墙体元件,以提供垂直和横向强度以及热和环境保护。已经使用各种配置和材料来提供一定程度的强度,热阻和复合作用。夹层板的力学依靠通过腹板连接器的剪切而产生的由于挠曲而产生的压缩力和拉力的传递。这些腹板连接器的类型从钢丝桁架到碳纤维复合格栅到实心混凝土区域不等。为了获得最佳的热性能,最适合不提供热桥的连接器。为了获得最佳的强度和刚度性能,应使用在混凝土区域产生最大程度的复合作用和锚固的剪切连接器。此外,如果隔热水平的混凝土夹心板能够更好地理解,开发和测试,而不是用作墙面元件,则可用于水平应用,而不是用作墙体,则它们可用于屋顶和可能的地板应用。这将提供环境和热阻以及所需的强度和刚度。本研究调查了使用实心腹板FRP板剪切连接器的几种比例测试夹心板配置的设计和测试。计算并比较每组面板的刚度,强度和复合作用程度,最后开发并测试2个全尺寸测试面板。除测试和计算外,还采用数值建模或有限元分析来显示测试结果之间的相关性,以便将来开发分析模型。预制混凝土夹芯板的工程性能取决于其组成材料的复合作用程度和性能强度而变化。采用非线性数值求解器可以捕获面板在弯曲载荷下的准静态响应是有价值的,并且对于将来的开发很重要。为了进一步开发和研究将其用作屋顶或地板结构支撑构件的合理性。在这项研究中还对长期蠕变效应进行了研究,但是有必要进行进一步的蠕变研究,并建议进行此研究。最后,这些面板不限于住宅和商业应用,而是具有作为旨在提供爆炸和/或意外爆炸保护的结构的合适候选物的潜力。

著录项

  • 作者

    Hopkins, Paul M.;

  • 作者单位

    University of Idaho.;

  • 授予单位 University of Idaho.;
  • 学科 Civil engineering.
  • 学位 Ph.D.
  • 年度 2015
  • 页码 246 p.
  • 总页数 246
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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