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首页> 外文期刊>Journal of materials in civil engineering >Influence of Lamination Aspect Ratios and Test Methods on Rolling Shear Strength Evaluation of Cross-Laminated Timber
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Influence of Lamination Aspect Ratios and Test Methods on Rolling Shear Strength Evaluation of Cross-Laminated Timber

机译:层压纵横比和测试方法对交叉层压木材的滚动剪切强度评估的影响

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摘要

Rolling shear (RS) strength may govern load-carrying capacity of cross-laminated timber (CLT) subjected to high out-of-plane loading because high RS stresses may be induced in cross layers and wood typically has low RS strength. This study investigates RS strength properties of non-edge-glued CLT via experimental testing (short-span bending tests and modified planar shear tests) and numerical modeling. CLT specimens with different manufacturing parameters including two timber species (New Zealand-grown Douglas fir and Radiata pine), three lamination thicknesses (20, 35, and 45 mm), and various lamination aspect ratios (4.1-9.8) were studied. The lamination aspect ratio was found to have a substantial impact on RS strength of CLT. Higher aspect ratios led to a significant increase of RS strength, and an approximately linear relationship could be established. With similar lamination aspect ratios, the Radiata pine CLT had higher RS strength than the Douglas fir CLT. The two different test methods, however, yielded comparable RS strength assessments. Numerical models were further developed to study the influence of the test configurations and gaps in the cross layers on stress distributions in the cross layers. It was also found that the compressive stresses perpendicular to the grain in cross layers had negligible influence on the RS strength evaluations.
机译:滚动剪切(RS)强度可以控制承受高平面外载荷的交叉层压木材(CLT)的承载能力,因为在交叉层中可能会引起较高的RS应力,并且木材通常具有较低的RS强度。这项研究通过实验测试(短跨度弯曲测试和修正的平面剪切测试)和数值模型研究了非边缘胶合CLT的RS强度特性。研究了具有不同制造参数的CLT标本,包括两种木材(新西兰种植的花旗松和辐射松),三种层压厚度(20、35和45 mm)以及各种层压纵横比(4.1-9.8)。发现层压长宽比对CLT的RS强度具有实质性影响。较高的宽高比导致RS强度的显着提高,并且可以建立近似线性关系。在相似的层压宽高比下,辐射松CLT比花旗松CLT具有更高的RS强度。但是,两种不同的测试方法产生了可比较的RS强度评估。进一步开发了数值模型,以研究测试结构和跨层间隙对跨层应力分布的影响。还发现垂直于交叉层中晶粒的压应力对RS强度评估的影响可忽略不计。

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