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Experimental and analytical analysis for bending load capacity of old timber beams with defects when reinforced with carbon fiber strips

机译:碳纤维条加固有缺陷旧木梁弯曲承载力的试验分析分析

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This paper describes a comparative experimental and analytical study of the maximum bending load in timber beams of Pinus sylvestris L. having natural defects (knots, grain deviations, fissures and wanes) that are reinforced with carbon fiber composite (CFRP). Beams extracted during rehabilitation of the roof frame of the School of Law, University of Granada, had been in service for over two hundred years. Two commercial CFRP pultruded laminates were applied as reinforcement, for comparison. Both were properly glued with epoxy resin on the tension side of the beams, partially covering the area on this side. It is clearly shown that, due to the abundance of defects, using the elastoplastic constitutive law of timber and assuming the same tension and compression elastic moduli in the cross-section equilibrium method, the analytical values for the bending load capacity will not match the experimental ones. However, this assumption has been traditionally used in most previous research on timber beams reinforced with composite materials. As an alternative, a more general model for the timber may be used, in which the two moduli are considered to be different in compression and tension stresses. Results demonstrate how this modification provides a much better match between analytical and experimental values of the bending load capacity. The improvement is especially evident for beams with natural defects and many years in service, reinforced with CFRP for rehabilitation purposes. Moreover, a better mechanical behavior of the reinforced specimens is obtained, when compared with the control ones (without reinforcement): reinforcement induced an improvement of up to 88% in bending load capacity.
机译:本文描述了对比试验和分析研究,该实验研究了天然缺陷(结,纹理偏差,裂缝和弯折)并用碳纤维复合材料(CFRP)加固的樟子松木梁的最大弯曲载荷。格拉纳达大学法学院屋顶框架修复过程中提取的光束已经使用了200多年。为了比较,使用了两种商业CFRP拉挤层压板作为增强材料。两者都在梁的受力侧正确地用环氧树脂胶粘,部分覆盖了该侧的区域。可以清楚地看出,由于存在大量缺陷,使用木材的弹塑性本构律,并在横截面平衡法中假设相同的拉伸和压缩弹性模量,弯曲载荷能力的分析值将与实验值不符。那些。但是,这种假设传统上一直用于大多数复合材料增强木梁的研究中。替代地,可以使用更通用的木材模型,其中两个模量被认为在压缩应力和拉应力上是不同的。结果表明,这种修改如何在弯曲载荷能力的分析值和实验值之间提供更好的匹配。对于具有自然缺陷和使用多年的梁而言,这种改进尤其明显,并通过CFRP加固以达到修复目的。此外,与对照组(不加筋)相比,加筋试样具有更好的机械性能:加筋导致弯曲载荷能力提高多达88%。

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