Cheng Kai, Du Yulin, Wang Haiyan, Liu Rui, Sun Yu, Lu Zhichao, Chen Lingkun
Fourth Engineering Company Limited, China National Chemical Communications Construction Group Co., Ltd., Binzhou 256200, China.
Shijiazhuang Institute of Railway Technology, Shijiazhuang 050041, China.
Materials (Basel). 2023 Aug 20;16(16):5706. doi: 10.3390/ma16165706.
Shear damage of beams is typically brittle damage that is significantly more detrimental than flexural damage.
Based on the super-high toughness and good crack control ability of engineered cementitious composites (ECC), the shear performance of concrete-ECC beams was investigated by replacing a portion of the concrete in the tensile zone of reinforced concrete beams with ECC and employing high-strength reinforcing bars to design concrete-ECC beams. The purpose of this investigation is to elucidate and clarify the shear performance of concrete-ECC beams.
METHODOLOGY/APPROACH: Experimental and FE analyses were conducted on the shear performance of 36 webless reinforced concrete-ECC composite beams with varied concrete strengths, shear-to-span ratios, ECC thicknesses, and interfacial treatments between the layers.
The results indicate that the effect of the shear-to-span ratio is greater, the effect of the form of interface treatment is smaller, the effect is weakened after the ECC thickness is greater than 70 mm (i.e., the ratio of the replacement height to section height is approximately 0.35), the shear resistance is reduced when the hoop rate is greater, and the best shear resistance is obtained when the ECC 70 mm thickness and the hoop rate of 0.29% are used together.
This study can serve as a technical reference for enhancing the problems of low durability and inadequate fracture control performance of RC beams in shear and as a guide for structural design research.
梁的剪切破坏通常是脆性破坏,比弯曲破坏的危害大得多。
基于工程水泥基复合材料(ECC)的超高韧性和良好的裂缝控制能力,通过用ECC替换钢筋混凝土梁受拉区的部分混凝土并采用高强度钢筋来设计混凝土-ECC梁,研究混凝土-ECC梁的抗剪性能。本研究的目的是阐明和明确混凝土-ECC梁的抗剪性能。
方法/途径:对36根无腹筋钢筋混凝土-ECC组合梁进行了抗剪性能试验和有限元分析,这些梁具有不同的混凝土强度、剪跨比、ECC厚度以及层间界面处理方式。
结果表明,剪跨比的影响较大,界面处理形式的影响较小,ECC厚度大于70mm(即替换高度与截面高度之比约为0.35)后影响减弱,箍筋率较大时抗剪承载力降低,ECC厚度为70mm且箍筋率为0.29%时抗剪性能最佳。
本研究可为改善钢筋混凝土梁在抗剪方面耐久性低和裂缝控制性能不足的问题提供技术参考,并为结构设计研究提供指导。