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Long-term behaviour of Norway spruce glulam loaded perpendicular to grain

机译:挪威云杉的长期行为垂直于谷物装载

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摘要

The mechanical behaviour of timber loaded in compression perpendicular to grain is essential for a rational design of many timber structures. Structural components frequently exposed to such loading include studs on bottom rails, stress-laminated timber decks, timber elements lying in between vertical load-bearing columns as well as traditional timber joints mating surfaces in compression. Compression perpendicular to grain has been a repeated topic for discussion both in the current European regulations for timber structures, as well as in the ongoing work with the next generation of Eurocode 5-timber structures. However, the long-term behaviour is quite complex, taking both time and moisture variation into consideration, and to improve the understanding and the ability to consider the long-term effects in practical design, a simplified one-dimensional model is given herein. The paper presents novel results from long-term compression orthogonal to grain tests performed with load and moisture control. The purpose of the testing was to evaluate the effect of transversal creep on the long-term behaviour of timber elements including the effect of the mechanosorptive deformation. The test results were in turn used to calibrate a one-dimensional model for the prediction of the long-term response of timber. The model takes into account the combined effects of loading and moisture variations. The effective material properties are defined by use of effective pith locations together with the orthotropic material parameters. Finally, a comparison between the model results and experimental observations is given, showing an overall good prediction of the response.
机译:垂直于晶粒的压缩中装载的木材的机械行为对于许多木结构的合理设计是必不可少的。经常暴露于这种装载的结构部件包括底部导轨上的螺柱,压力层压木材甲板,垂直承载柱之间的木材元件以及压缩的传统木材接头配合表面。垂直于粮食的压缩是在目前欧洲木结构法规中讨论的重复主题,以及在持续的工作中与下一代欧式码的5-木结构。然而,长期行为非常复杂,考虑到时间和湿度的变化,并提高了解实际设计中的长期效果的理解和能力,本文给出了简化的一维模型。本文提出了具有载荷和湿度控制进行的长期压缩正交的长期压缩结果。测试的目的是评估横向蠕变对木材元件的长期行为的影响,包括机械型变形的效果。测试结果又用于校准一维模型,以预测木材的长期响应。该模型考虑了装载和湿气变化的综合影响。有效材料特性通过使用有效的髓位置与正交材料参数一起定义。最后,给出了模型结果与实验观察之间的比较,显示了对响应的整体良好预测。

著录项

  • 来源
    《European journal of wood and wood products》 |2019年第5期|821-832|共12页
  • 作者单位

    Norwegian Univ Sci & Technol NTNU Dept Struct Engn Rich Birkelandsvei 1A N-7491 Trondheim Norway;

    Norwegian Univ Sci & Technol NTNU Dept Struct Engn Rich Birkelandsvei 1A N-7491 Trondheim Norway;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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