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首页> 外文期刊>International Journal of Materials Engineering >Influence of Lamellar Thickness on Strength and Stiffness of Glued Laminated Timber Beams of Pinus oocarpa
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Influence of Lamellar Thickness on Strength and Stiffness of Glued Laminated Timber Beams of Pinus oocarpa

机译:板层厚度对松木胶合层压木梁强度和刚度的影响

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摘要

Glued laminated timber is a structural engineered product that requires precision and strict quality control in its manufacture. For ensure that produced elements properties are in compliance with regulatory requirements, final product must be tested under laboratory conditions. Determining factors in final glulam pieces cost are the type and the quantity of adhesive used in structural elements manufacture. This study aimed to investigate, aided by three point static bending tests and variance analysis (ANOVA), influence of glue lines (3, 5, 7) and lamellae (4, 6, 8) on strength (MOR) and stiffness (MOE) properties of glulam beams manufactured with Pinusoocarpa (CCA treated) and bonded with Phenol Resorcinol resin (Cascophen RS-216-M). These beams presented nominal dimensions 90mm wide; 100mm height; and 1350mm length. For 100 mm fixed height, three beams configurations were tested (a) with four lamellae of 25 mm (3 glue lines); with 6 lamellae of 16,7 mm (5 glue lines) and 8 lamellae of 12.5 mm each (7glue lines), being fabricated 6 beams for experimental condition. In addition to investigating influence of glue lines and lamellae number, possibility of estimating MOE and MOR based on apparent density was also evaluated. ANOVA results showed no significance about glue lines number (or lamellae thickness) in strength and stiffness values, implying, for economic reasons, be configuration with four 25mm lamellae the best among tested beams. From regressions, apparent density was only significant in MOE estimating (R2 = 46.90%), indicating not be possible to estimate the stiffness and strength values of the glued laminated timber evaluated by the apparent density.
机译:胶合层压木材是一种结构工程产品,在制造过程中需要精确和严格的质量控制。为了确保所生产元素的特性符合法规要求,必须在实验室条件下对最终产品进行测试。最终胶合片成本的决定因素是用于结构元件制造的胶粘剂的类型和数量。这项研究旨在通过三点静态弯曲测试和方差分析(ANOVA)来研究胶线(3、5、7)和薄片(4、6、8)对强度(MOR)和刚度(MOE)的影响松果皮(经CCA处理)制造并与苯酚间苯二酚树脂(Cascophen RS-216-M)粘合的胶合木梁的特性。这些光束的标称尺寸为90mm宽。 100mm高;长度为1350mm对于100 mm的固定高度,测试了三个梁的配置(a)具有四个25 mm的薄片(3条胶合线);具有6个16.7毫米的薄片(5条胶合线)和8个12.5毫米的薄片(7胶合线),为实验条件制造了6束。除了研究胶线和层数的影响外,还评估了根据表观密度估算MOE和MOR的可能性。方差分析的结果表明,胶线数量(或薄片厚度)在强度和刚度值上没有意义,这出于经济原因,暗示配置四个25mm薄片是测试光束中最好的。从回归分析来看,表观密度仅在MOE估计中才有意义(R 2 = 46.90%),这表明无法通过表观密度评估胶合层压木材的刚度和强度值。

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