...
首页> 外文期刊>Composites >Experimental and analytical investigation on CFRP strengthened glulam laminated timber beams: Full-scale experiments
【24h】

Experimental and analytical investigation on CFRP strengthened glulam laminated timber beams: Full-scale experiments

机译:CFRP加固胶合层合木梁的实验和分析研究:全面试验

获取原文
获取原文并翻译 | 示例
           

摘要

Timber is one of the most appealing and aesthetic construction materials with excellent characteristics compared with other construction materials such as steel, concrete and clay bricks. It is one of the oldest sustainable construction materials and still continues to be a popular choice in modern infrastructure. In recent years, fibre reinforced polymers (FRP) has emerged to improve mechanical properties even further. In this study, results of experimental tests on strengthened glulam beams have been used to investigate potential parameters affecting flexural strength and ultimate load carrying capacity of glulam beams strengthened with externally bonded FRP sheets. Eight full-scale timber beams with and without FRP reinforcement were tested where the bonded length, width, and thickness of the FRP was varied for FRP strengthened beams. The test results pointed out that reduction of stress concentrations can enhance the mechanical performance of the strengthened beams. The ultimate load carrying capacity and flexural strength of reinforced beams improved significantly when bond length and bond width increased. Results of experiments showed that further increase in bond thickness predominantly improves stiffness and ductility of the strengthened timber beams which has a significant enhancement in ultimate deflection and serviceability limit state. An analytical model has been established to determine the ultimate flexural capacity of strengthened timber beam. Satisfactory correlation is achieved between measured and predicted flexural capacity, signifying the capability of the new models.
机译:与钢,混凝土和粘土砖等其他建筑材料相比,木材是具有吸引力的材料,是最具吸引力和最美观的建筑材料之一。它是最古老的可持续建筑材料之一,并且仍然继续是现代基础设施中的流行选择。近年来,纤维增强聚合物(FRP)出现了,以进一步改善机械性能。在这项研究中,对增强的胶合木梁的实验测试结果已用于研究潜在的参数,这些参数会影响用外部粘结的FRP片材增强的胶合木梁的抗弯强度和极限承载力。测试了八种带有和不带有FRP加固的全尺寸木梁,其中FRP加固的梁的粘结长度,宽度和厚度均发生了变化。试验结果表明,降低应力集中可以增强加固梁的力学性能。当粘结长度和粘结宽度增加时,增强梁的极限承载力和抗弯强度显着提高。实验结果表明,粘结厚度的进一步增加主要提高了加固木梁的刚度和延性,从而极大地提高了极限挠度和使用寿命极限状态。建立了一个分析模型来确定加固木梁的极限抗弯能力。在测得的和预测的挠曲能力之间实现了令人满意的相关性,表明了新模型的能力。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号