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Cyclic behavior of screen grid insulated concrete form components .

机译:丝网格栅保温混凝土模板构件的循环行为。

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摘要

The principle of sustainability in the built environment has become much more significant in the past decade, resulting in a push to develop building systems that are more energy efficient, durable, and use fewer natural resources. For residential and light commercial buildings, insulated concrete forms (ICF) have enjoyed increasing popularity for their ability to meet these new demands. ICFs are a stay-in-place concrete formwork system for building structural walls that are also highly insulated, among other benefits.;Screen-grid ICFs (SGICF) are a small subset of ICFs that tend to use less concrete than standard ICFs and are sometimes made of recycled materials. These traits make SGICFs attractive, but there is a lack of understanding of their structural characteristics due to their irregular internal concrete structure. Because of this, structures using SGICFs are limited to heights no higher than two stories. Further study should show whether SGICFs structures can safely built to greater heights.;This investigation studied two types of SGICFs at a component level in order to gain understanding of their lateral force and drift ratio capacities under cyclic loading. Several variables, including steel reinforcement details, the type of concrete, and the presence of the forms, were altered to measure their impact on the performance of the systems. Test results suggested that the ICF formwork increased lateral strength by up to 100% and lateral deformation capacity by up 60% when compared to identical specimens tested with the formwork removed. Results also showed that confinement of the cement, either by mesh hoops, spiral wire, or fiber-reinforced concrete improved the drift ratio at failure up to 500% when compared to specimens with no confinement material.;Computer models were created to gauge their ability to replicate the behavior of the experimental test results. The models typically overestimated the lateral load resistance of the samples by 50%-100%, and even more in some cases, depending on the reinforcement. The models were not reliable in determining the drift ratio at which the sample was considered to have failed. In some cases the model failed at 50% lower lateral deformations than the test specimen, while in others the model did not fail at all.;Future studies should explore refinements of the models to increase their accuracy and usefulness, as well as accounting for the contributions do to the form material. Future studies should also include using spiral wires, mesh hoops, or fiber reinforced concrete in full-scale walls to verify their efficacy in improving overall wall performance.
机译:在过去的十年中,建筑环境中的可持续性原则变得越来越重要,从而推动了开发更节能,更耐用且使用更少自然资源的建筑系统。对于住宅和轻型商业建筑,绝缘混凝土模板(ICF)由于能够满足这些新要求而受到越来越多的欢迎。 ICF是用于建筑结构墙的现浇混凝土模板系统,该结构墙还具有很高的绝缘性,其中还有其他好处。筛网ICF(SGICF)是ICF的一小部分,与标准ICF相比,它使用的混凝土较少。有时由回收材料制成。这些特性使SGICF具有吸引力,但由于其内部混凝土结构不规则,因此对其结构特征缺乏了解。因此,使用SGICF的结构的高度不得超过两个楼层。进一步的研究应该表明SGICFs结构是否可以安全地建造到更高的高度。这项研究在构件水平上研究了两种类型的SGICFs,以便了解其在循环载荷下的侧向力和漂移比能力。更改了几个变量,包括钢筋细节,混凝土类型和模板的存在情况,以衡量它们对系统性能的影响。测试结果表明,与移除模板的相同试样相比,ICF模板可将横向强度提高100%,将横向变形能力提高60%。结果还表明,与没有约束材料的标本相比,通过网箍,螺旋线或纤维增强的混凝土进行约束可以将破坏时的漂移率提高多达500%.;创建了计算机模型以评估其能力复制实验测试结果的行为。这些模型通常高估了样品的横向载荷阻力50%-100%,在某些情况下甚至更高,具体取决于钢筋。这些模型在确定样品被认为不合格时的漂移率方面并不可靠。在某些情况下,模型的横向变形比试样低50%,而在其他情况下,模型则完全没有破坏。未来的研究应探索模型的改进以提高模型的准确性和实用性,并考虑到对表格材料的贡献。未来的研究还应包括在全尺寸墙体中使用螺旋线,网箍或纤维增强混凝土,以验证其在改善整体墙体性能方面的功效。

著录项

  • 作者

    Werner, Carl Scott.;

  • 作者单位

    Portland State University.;

  • 授予单位 Portland State University.;
  • 学科 Engineering Civil.;Sustainability.
  • 学位 M.S.
  • 年度 2010
  • 页码 143 p.
  • 总页数 143
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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