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Development of a Versatile Section Analysis Tool (VSAT) for use in structural design with a seismic emphasis.

机译:开发了一种多功能截面分析工具(VSAT),用于结构设计,并具有抗震能力。

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摘要

The design of structural members subjected to seismic activity has progressed in recent years but does not yet include the effects of cold temperatures. In areas such as Alaska, the Midwest, East Coast, and even in some parts of the West Coast, this approach introduces a real deficiency as it is likely that an earthquake will occur during winter months. The current research program was initiated to address this deficiency by developing a section analysis tool program capable of defining the moment-curvature response in either warm or low temperatures. As part of this investigation, the stress-strain behavior of A706 Grade 60 mild steel reinforcement was studied under low temperatures (20.C to -40.C) to ensure that the effects of temperature is accurately accounted for in the newly developed analysis tool. In addition to mild steel, the effects of cold temperatures on the behavior of soil, unconfined concrete, and confined concrete are currently being examined by other researchers at Iowa State University.;The Versatile Section Analysis Tool (VSAT) was developed to reduce the general limitations found in other programs. Amongst these limitations are limited available material models, lack of commonly used section shapes, and the exclusion of soil and low temperature effects. VSAT was constructed with many different features to provide versatility in how the user wishes to establish material properties for a particular analysis. VSAT includes the following features: permitting different cross-sections, defining normal strength or UHPC material properties, defining simplistic or sophisticated mild steel or prestressing steel material properties, allowing the addition of soil pressure, including a steel shell circular section, and accounting for low temperature effects on material behavior.;The testing of mild steel reinforcement at low temperatures showed a quadratic increase in the yield and ultimate strengths of 5.1 and 6.3 percent, respectively, when lowering specimen temperatures from 20.C to -40.C. It was also found that the modulus of elasticity, ultimate strain, and strain hardening strain were insignificantly affected under the same conditions. Assumptions for the behavioral changes of concrete under low temperatures to be used in VSAT have been compiled from previous research until current testing can be completed. These assumptions will then be replaced with experimental data collected by this project's partner researcher, Aaron Shelman.;As portions of VSAT were completed, the program was continually verified to be functioning correctly. First, previously known material models were verified to coincide with those presented in this thesis by hand and within the newly developed program. Second, as shown in the verification section of this thesis, non-prestressed rectangular and circular sections were compared with King's Program to ensure accuracy. UHPC H-shaped sections were also examined based upon the work and experimentation of Vande Voort et al. (2008). Unique features, where a comparison is impossible (i.e. temperature effects on the stress-strain behavior of mild steel reinforcement), have been carefully added to VSAT. The effects of these features have been checked, by hand, to ensure that the program is functioning properly.;The development of VSAT has been successfully initiated and the results for particular sections have proven to be comparable with previously created section analysis programs. Further expansion of the program is possible as additional desired features become apparent. Due to time constraints and the scope of this project, any addition features and continual testing of the program was left for a successor to complete.
机译:近年来,承受地震活动的结构构件的设计取得了进步,但还没有考虑到低温的影响。在阿拉斯加,中西部,东海岸乃至西海岸的某些地区,这种方法带来了真正的不足,因为冬季很可能会发生地震。当前的研究计划是通过开发截面分析工具程序来解决这一缺陷的,该程序能够定义在高温或低温下的弯矩曲率响应。作为此研究的一部分,对A706 60级低碳钢增强材料在低温(20.C至-40.C)下的应力-应变行为进行了研究,以确保在新开发的分析工具中准确地考虑到温度的影响。 。除了低碳钢外,爱荷华州立大学的其他研究人员目前还在研究低温对土壤,无侧限混凝土和承压混凝土性能的影响。通用截面分析工具(VSAT)的开发是为了减少一般情况其他程序中存在的局限性。这些限制包括有限的可用材料模型,缺乏常用的截面形状以及排除土壤和低温影响。 VSAT具有许多不同的功能,以提供用户希望如何为特定分析建立材料特性的多功能性。 VSAT具有以下特征:允许不同的横截面,定义法向强度或UHPC材料属性,定义简单或复杂的低碳钢或预应力钢材料属性,允许增加土壤压力(包括钢壳圆形截面)并考虑低应力温度对材料性能的影响。在低温下对低碳钢进行的测试表明,当将试样温度从20°C降低到-40.C时,屈服强度和极限强度分别二次增加5.1%和6.3%。还发现,在相同条件下,弹性模量,极限应变和应变硬化应变几乎没有受到影响。在以前的研究中,已经汇编了用于VSAT的低温下混凝土行为变化的假设,直到可以完成当前的测试为止。然后,这些假设将被该项目的合作伙伴研究人员Aaron Shelman收集的实验数据取代。随着VSAT的部分完成,该程序不断得到验证,可以正常运行。首先,在新开发的程序中,通过手工验证了先前已知的材料模型,使其与本论文中介绍的模型一致。其次,如本文的验证部分所示,将非预应力矩形和圆形截面与King's Program进行比较,以确保准确性。基于Vande Voort等人的工作和实验,还检查了UHPC H形截面。 (2008)。 VSAT已仔细添加了无法进行比较的独特功能(即温度对低碳钢加固的应力应变行为的影响)。手动检查了这些功能的影响,以确保程序正常运行。;已成功启动VSAT的开发,并且已证明特定断面的结果可与以前创建的断面分析程序进行比较。随着其他所需功能的显现,程序的进一步扩展是可能的。由于时间限制和该项目的范围,该程序的所有其他功能和持续测试都留给后继者完成。

著录项

  • 作者

    Levings, Jared Christopher.;

  • 作者单位

    Iowa State University.;

  • 授予单位 Iowa State University.;
  • 学科 Engineering Civil.
  • 学位 M.S.
  • 年度 2009
  • 页码 194 p.
  • 总页数 194
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:38:27

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