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Production feasibility and performance of carbon fibre reinforced glulam beams manufactured with polyurethane adhesive

机译:用聚氨酯胶粘剂制造的碳纤维增强胶合木梁的生产可行性和性能

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摘要

Wood is a structural material traditional and modern at the same time. It can be used as solid timber or combined with adhesives to form engineered wood products with enhanced mechanical properties, opening several opportunities for the development of the wood building sector in the construction industry. Here, the feasibility of producing glulam beams reinforced with carbon fabric applied using mono-component polyurethane glue was analysed. The same adhesive was utilized during beam manufacturing; thus, carbon-reinforced elements were produced with a unique assembling procedure. Unreinforced glulam beams were compared with strengthened elements; the factors analysed were the thickness of the carbon fabric and the adhesive type used at the fabric-timber interface, comparing the polyurethane adhesive with an epoxy resin. Both bending tests and numerical modelling have been performed in the study. Tests showed that the general performance of the strengthened elements with polyurethane glue, in terms of strength and stiffness, was equivalent with the one obtained with the epoxy adhesive used as a reference, thus confirming that polyurethane can be fully suitable and efficient for industrial production. The carbon fabric considerably improved the bending strength of the original element (between 45% and 57%); the quantity of fibres did not influence the strength, but it significantly affected the stiffness (increased from 12% to 22% for carbon fabric of 500 and 1000 g/m2weight, respectively, compared to unreinforced beams). The modelling evidenced that the effective modulus of elasticity of the reinforcement, as a system of carbon fabric and adhesive, was on average higher and with lower variability for the specimens with polyurethane adhesive compared to the ones with the same carbon fibre quantity but glued with epoxy resins.
机译:木材同时是传统和现代的结构材料。它既可以用作实木,也可以与粘合剂结合使用,形成具有增强的机械性能的工程木产品,从而为建筑业中木材建筑行业的发展提供了许多机会。在这里,分析了用单组分聚氨酯胶涂覆碳纤维增强的胶合木梁的可行性。在梁制造过程中使用了相同的粘合剂;因此,用独特的组装程序生产了碳增强元件。将未加固的胶合木梁与加固的元件进行了比较。分析的因素是碳纤维织物的厚度和织物-木材界面使用的粘合剂类型,将聚氨酯粘合剂与环氧树脂进行了比较。研究中同时进行了弯曲试验和数值模拟。试验表明,就强度和刚度而言,用聚氨酯胶粘剂增强的元件的一般性能与用环氧胶粘剂作为参照物所获得的性能相当,因此证实了聚氨酯可以完全适合并有效地用于工业生产。碳纤维织物大大提高了原始元素的抗弯强度(介于45%和57%之间);纤维的数量不会影响强度,但会显着影响刚度(与未增强梁相比,500和1000μg/ m2重量的碳纤维织物的刚度从12%增加到22%)。该模型表明,与碳纤维量相同但用环氧树脂胶粘的试样相比,作为碳纤维织物和胶粘剂体系的增强材料的有效弹性模量,平均而言,聚氨酯胶粘剂试样的有效弹性模量较高,变异性较低。树脂。

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