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Self compacting reinforced concrete beams strengthened with natural fiber under cyclic loading

机译:循环荷载下天然纤维增强自密实钢筋混凝土梁

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The present work focuses on the use of coconut fiber in self compacting concrete. Self-Compacting Concrete (SCC) is a highly flowable, stable concrete which flows readily into place, filling formwork without any consolidation and without undergoing any significant segregation. Use of fibers in SCC bridge the cracks and enhance the performance of concrete by not allowing cracks to propagate. They contribute to an increased energy absorption compared to plain concrete. Coconut fiber has the highest toughness among all natural fibers. It is known that structures in the seismic prone areas are always under the influence of cyclic loading. To justify the importance of strengthening SCC beams with coir fiber, the present work has been undertaken. A comparison is made between cyclic and static loading of coconut fiber reinforced self compacting concrete (FRSCC) members. Using the test data obtained from the experiment, hysteresis loops were drawn and comparison of envelope curve, energy dissipation, stiffness degradation were made and important conclusions were draw to justify the use of coconut fiber in SCC.
机译:本工作着重于在自密实混凝土中使用椰子纤维。自密实混凝土(SCC)是一种高流动性,稳定的混凝土,易于流动到位,填充模板而没有任何固结,也没有任何明显的偏析。通过在SCC中使用纤维来弥合裂缝并通过不允许裂缝扩展来增强混凝土的性能。与普通混凝土相比,它们有助于增加能量吸收。椰子纤维在所有天然纤维中具有最高的韧性。众所周知,地震多发地区的结构总是受到循环荷载的影响。为了证明用椰壳纤维加强SCC梁的重要性,目前已经开展了工作。比较了椰子纤维增强自密实混凝土(FRSCC)构件的循环荷载和静态荷载。使用从实验获得的测试数据,绘制了磁滞回线,并比较了包络曲线,能量耗散,刚度降低,并得出重要结论,以证明在SCC中使用椰子纤维是合理的。

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