首页> 外文期刊>Construction and Building Materials >Experimental investigation on flexural behaviour of composite PVC encased macro-synthetic fibre reinforced concrete walls
【24h】

Experimental investigation on flexural behaviour of composite PVC encased macro-synthetic fibre reinforced concrete walls

机译:复合PVC抗弯曲行为的实验研究宏观合成纤维钢筋混凝土墙体

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

Composite PVC encased concrete walls provide substantial advantages in terms of structural strength and durability enhancement, ultraviolet radiation and pest infestation resistance, design flexibility, ease of construction and excellent resistance to impact. In this study, the effects of using macro-synthetic fibre reinforced concrete on flexural behaviour of composite PVC encased walls in comparison with composite PVC encased walls filled with conventional plain concrete and reinforced concrete have been experimentally investigated. Fifteen composite PVC encased concrete wall specimens were cast and tested using three-point bending test. Based on the load-deflection curves resulting from the three-point bending tests, flexural parameters including ultimate loads, ultimate flexural strengths, stiffness and flexural rigidity values for cracked and uncracked conditions were determined for three different cases including i) test specimens filled with plain concrete, ii) test specimens filled with macro-synthetic fibre reinforced concrete, and iii) test specimens filled with reinforced concrete. The determined parameters as well as the measured load-deflection curves for the three cases were compared and the final findings have been discussed. Based on this study, it has become apparent that using BarChip 48 macro-synthetic fibre reinforced concrete in composite PVC encased walls instead of plain concrete can lead to 43.5% flexural strength improvement and 25% stiffness enhancement at the age of 28 days. Based on the experimental measurements and theoretical comparison in this study, it has been concluded that composite PVC encased walls filled with BarChip 48 macro-synthetic fibre reinforced concrete, without steel reinforcement, are deemed suitable for sway-prevented structures such as retaining walls. If using steel reinforcement in composite PVC encased retaining walls is not an option due to high-risk of steel corrosion in harsh environment; it is highly recommended that the retaining walls to be filled with macrosynthetic fibre reinforced concrete instead of plain concrete to ensure the safety and structural integrity of this type of sway-prevented structures. (C) 2020 Elsevier Ltd. All rights reserved.
机译:复合PVC被包裹的混凝土墙在结构强度和耐久性增强,紫外线辐射和害虫侵蚀性,设计灵活性,易于施工方面和对抗冲击性优异的方面提供了实质性的优势。在本研究中,使用宏观合成纤维增强混凝土对复合PVC封装壁的抗弯行为的影响,与复合PVC封装填充有传统的普通混凝土和钢筋混凝土的墙壁进行了实验研究。使用三点弯曲试验施放十五个复合PVC包装混凝土墙样本。基于由三点弯曲试验所产生的负载偏转曲线,确定包括裂纹和未粘合的条件的最终载荷,最终弯曲强度,刚度和弯曲刚度值的弯曲参数,包括填充平原的试样混凝土,II)填充宏合成纤维混凝土的试样,III)试验填充钢筋混凝土。比较了所确定的参数以及三种情况下的测量载荷偏转曲线,并讨论了最终结果。基于这项研究,它已经变得显然,在复合PVC包装壁上使用Barchip 48宏合成纤维增强混凝土而不是普通混凝土,可以导致43.5%的抗弯强度提高和25%僵硬增强28天。基于本研究的实验测量和理论比较,已经得出结论,填充有Barchip 48宏观合成纤维增强混凝土的复合PVC包装壁,无需钢筋钢筋,被认为适用于防止挡土墙,例如挡土墙。如果在复合PVC中使用钢加固包裹的挡土墙,则由于恶劣环境中的钢腐蚀的高风险不是一种选择;强烈建议挡土墙填充宏观合成纤维增强混凝土代替普通混凝土,以确保这种类型的摇摆防止结构的安全性和结构完整性。 (c)2020 elestvier有限公司保留所有权利。

著录项

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