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Refined Zigzag Theory: an appropriate tool for the analysis of CLT-plates and other shear-elastic timber structures

机译:精致的Zigzag理论:用于分析CLT板和其他剪切弹性木结构的适当工具

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摘要

Cross laminated timber (CLT), as a structural plate-like timber product, has been established as a load bearing product for walls, floor and roof elements. In a bending situation due to the transverse shear flexibility of the crossing layers, the warping of the cross section follows a zigzag pattern which should be considered in the calculation model. The Refined Zigzag Theory (RZT) can fulfill this requirement in a very simple and efficient way. The RZT, founded in 2007 by A. Tessler (NASA Langley Research Center), M. Di Sciuva and M. Gherlone (Politecnico Torino) is a very robust and accurate analysis tool, which can handle the typical zigag warping of the cross section by introducing only one additional kinematic degree of freedom in case of plane beams and two more in case of biaxial bending of plates. Thus, the RZT-kinematics is able to reflect the specific and local stress behaviour near concentrated loads in combination with a warping constraint, while most other theories do not. A comparison is made with different methods of calculation, as the modified Gamma-method, the Shear Analogy method (SA) and the First Order Shear Deformation Theory (FSDT). For a test example of a two-span continuous beam, an error estimation concerning the maximum bending stress is presented depending on the slenderness L/h and the width of contact area at the intermediate support. A stability investigation shows that FSDT provides sufficiently accurate results if the ratio of bending and shear stiffness is in a range as stated in the test example. It is shown that by a simple modification in the determination of the zigzag function, the scope can be extended to beams with arbitrary non-rectangular cross section. This generalization step considerably improves the possibilities for the application of RZT. Furthermore, beam structures with interlayer slip can easily be treated. So the RZT is very well suited to analyze all kinds, of shear-elastic structural element like CLT-plate, timber-concrete composite structure or doweled beam in an accurate and unified way.
机译:作为结构板状木材产品的交叉层压木材(CLT)已经建立为墙壁,地板和屋顶元件的承载产品。在弯曲的情况下由于交叉层的横向剪切柔韧性,横截面的翘曲遵循应在计算模型中考虑的锯齿形图案。精致的锯齿形理论(RZT)可以以非常简单有效的方式满足这一要求。 RZT由A. Tessler(NASA Langley Research Center)成立于2007年,M. Di Sciuva和M. Gerlone(PoliteCnicoorino)是一个非常坚固且准确的分析工具,可以处理横截面的典型Zigag翘曲在平面梁的情况下仅在平面梁的情况下引入一个额外的运动程度,在双轴弯曲的盘子的情况下。因此,RZT-Kinematics能够反映浓度载荷附近的特定和局部应力行为与翘曲约束相结合,而大多数其他理论则不是。用不同的计算方法进行比较,作为改进的伽马方法,剪切类比方法(SA)和第一阶剪切变形理论(FSDT)。对于双跨度连续光束的测试示例,根据中间支撑处的纤细L / H和接触面积的宽度来呈现关于最大弯曲应力的误差估计。稳定性研究表明,如果弯曲和剪切刚度的比率在测试示例中所规定的范围内,则FSDT提供了足够的准确结果。结果表明,通过在确定Z字形函数的确定时,可以将范围扩展到具有任意非矩形横截面的波束。该泛化步骤大大提高了RZT应用的可能性。此外,可以容易地处理具有层间滑动的梁结构。因此,RZT非常适合分析各种剪切弹性结构元件,如CLT板,木材混凝土复合结构或以准确统一的方式销钉。

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