A NUMERICAL MODEL FOR ANALYZING CROSS LAMINATED TIMBER UNDER OUT OF PLANE LOADING

M. V. Purčar, L. Kozarić, S. Bursać, Ž. Tekić
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Abstract

This paper targets the validity of a novel numerical model for analyzing CLT under out of plane loading. This numerical model was initially developed for determining the shear lag effect that appears in laminated thin walled composite beams. A parametric study was conducted in order to determine the influence of orientation of layers in CLT panels on bending strength and deflection. For confirming the accuracy of the proposed model, the results from the numerical model are compared with the external results of the computer software Ansys. The differences in bending stress vary from 0.27% to 1.69% depending on the orientation of layers and for deflection the differences are ranged from 2.25% to 7.42%. A numerical study was conducted and obtained data corresponds to results obtained from experimental study. It was concluded that the proposed numerical method can enough precisely predict the behavior of CLT under out of plane loading.
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分析平面外荷载下交叉层压木材的数值模型
本文针对一种新型数值模型的有效性进行了研究,该模型用于分析在平面外荷载作用下的 CLT。该数值模型最初是为确定层压薄壁复合梁中出现的剪切滞后效应而开发的。为了确定 CLT 面板中各层方向对弯曲强度和挠度的影响,进行了参数研究。为了证实所提模型的准确性,将数值模型的结果与计算机软件 Ansys 的外部结果进行了比较。弯曲应力的差异从 0.27% 到 1.69% 不等,这取决于层的方向,而挠度的差异则从 2.25% 到 7.42% 不等。进行了数值研究,获得的数据与实验研究结果一致。结论是所提出的数值方法可以足够精确地预测 CLT 在平面外荷载下的行为。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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