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CREEP BEHAVIOR OF SOLID-SAWN AND WOOD I-JOIST FLOORS

机译:实木和丁字木地板的蠕变行为

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摘要

The creep responses of twelve individual I-joists and six wood-framed floor systems were measured for a duration of approximately 120 days. The I-joists and floor systems were divided into two sets, each having six individual I-joists and three floor systems. The study I-joists were fabricated with laminated veneer lumber (LVL) flanges and oriented strand board (OSB) webbing. The floor systems included one floor framed with No. 1 Southern yellow pine floor joists, which served as a control, and two floors constructed with wood I-joists. All floors were sheathed with OSB panels, nailed and glued to the top edges of the joists, and were designed to carry a total dead plus live load of 2.40 kPa (50 psf). A sustained load of 0.96 kPa (20 psf) was applied for the duration of the experiment. Relative humidity and temperature were maintained between 34% and 60% and between 22°C and 26°C (72°F and 79°F), respectively. The overall average creep ratios (total deflection/instantaneous deflection) of the I-joists, I-joist floor systems, and solid-sawn floor systems were 1.66, 1.53, and 1.71, respectively. The creep ratios of the I-joist and solid-sawn floors were not significantly different (p 0.05). Observed creep ratios of the solid-sawn floors were greater than those reported by prior studies for nailed solid-sawn floors; observed creep ratios for the I-joist floors were lower than those reported by prior research for a similar, but not identical, I-joist floor system
机译:在大约120天的时间内,测量了12个单独的I型托梁和6个木结构地板系统的蠕变响应。工字梁和地板系统分为两组,每组有六个独立的工字梁和三个地板系统。研究型I型托梁采用层压单板(LVL)法兰和定向刨花板(OSB)织带制成。地板系统包括一层用1号南方黄松地板托梁作为控制的地板,以及两层用木材I型托梁构造的地板。所有地板都用OSB面板覆盖,用钉子钉和胶粘到托梁的顶部边缘,并且设计为可承受2.40 kPa(50 psf)的总静载和活载。在实验过程中施加了0.96 kPa(20 psf)的持续载荷。相对湿度和温度分别保持在34%和60%之间以及22°C和26°C(72°F和79°F)之间。工字梁,工字梁地板系统和实心锯割地板系统的总体平均蠕变比(总挠度/瞬时挠度)分别为1.66、1.53和1.71。工字梁和实心锯割地板的蠕变率没有显着差异(p> 0.05)。实心硬质地板的观察到的蠕变比大于先前研究中钉固实心硬质地板的报告。对于类似但不完全相同的工字钢地板系统,工字钢地板观察到的蠕变率低于先前的研究报告。

著录项

  • 来源
    《Transactions of the ASABE》 |2005年第1期|p.341-349|共9页
  • 作者单位

    Ronald W. Roeder, Jr., ASAE Member Engineer, Design Engineer, Rigidply Rafters, Inc., Richland, Pennsylvania;

    Harvey B. Manbeck, ASAE Fellow Engineer, Distinguished Professor Emeritus, Department of Agricultural and Biological Engineering, Pennsylvania State University;

    and John J. Janowiak, Professor, School of Forest Resources, Pennsylvania State University, University Park, Pennsylvania. Corresponding author: Harvey B. Manbeck, Agricultural and Biological Engineering Department, 210 Agricultural Engineering Bldg., Pennsylvania State University, University Park, PA 16802;

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

    Creep; Engineered wood; Long-term deflection; Residential floors; Wood I-joists;

    机译:蠕变;工程木;长期偏斜;住宅地板;木工托梁;

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