Albidah Abdulrahman S, Alsaif Abdulaziz S
Civil Engineering Department, College of Engineering, King Saud University, P.O. Box 800, Riyadh 11421, Saudi Arabia.
Materials (Basel). 2024 Apr 22;17(8):1931. doi: 10.3390/ma17081931.
Recycling rubber and/or steel fiber components of waste tires in construction applications is a venue for maximizing the recycling rate of these items. Additionally, it supports the move towards producing sustainable construction materials and conserving natural resources. Previous research explored the viability of employing recycled waste rubber particles as an alternative for natural aggregate. Despite the adverse effect of rubber on the mechanical properties of concrete (e.g., lower compressive strength), it produces several advantages, including excellent dynamic and ductility properties, which can be utilized in structural members critical to dynamic loads, e.g., blasts, earthquakes, and impacts. In an effort to expand the adoption of waste rubber in concrete beams and to eliminate key concerns associated with the degradation of their flexural behavior, the functionally graded (FG) beams concept was utilized. The present investigation comprised the testing of five beams using a four-point bending configuration. Plain concrete, rubberized concrete (RuC), and steel-fiber reinforced rubberized concrete (SFRRuC) beams were cast along with FG beams arranged in two layers. The top layer of the FG beams comprised plain concrete, while the bottom layer consisted of RuC or SFRRuC. Experimental findings indicated that the flexural behavior of the FG beam with layers of SFRRuC and plain concrete exceeded the flexural strength, displacement ductility ratio, and toughness performances of the plain concrete beam by 9.9%, 12.9%, and 24.4%, respectively. The moment-curvature relationship was also predicted for the tested beam and showed an excellent match with the experimentally measured relationship.
在建筑应用中回收废旧轮胎的橡胶和/或钢纤维部件是提高这些物品回收率的一个途径。此外,它有助于推动生产可持续建筑材料并保护自然资源。先前的研究探讨了使用回收废橡胶颗粒替代天然骨料的可行性。尽管橡胶对混凝土的力学性能有不利影响(例如抗压强度较低),但它具有一些优点,包括出色的动态性能和延性性能,可用于对动态荷载(如爆炸、地震和冲击)至关重要的结构构件。为了扩大废橡胶在混凝土梁中的应用,并消除与其弯曲性能退化相关的关键问题,采用了功能梯度(FG)梁的概念。本研究包括使用四点弯曲配置对五根梁进行测试。浇筑了素混凝土梁、橡胶混凝土(RuC)梁、钢纤维增强橡胶混凝土(SFRRuC)梁以及两层布置的FG梁。FG梁的顶层由素混凝土组成,而底层由RuC或SFRRuC组成。实验结果表明,由SFRRuC层和素混凝土层组成的FG梁的弯曲性能分别比素混凝土梁的抗弯强度、位移延性比和韧性性能高出9.9%、12.9%和24.4%。还对测试梁的弯矩 - 曲率关系进行了预测,结果表明与实验测量关系非常吻合。