Experimental study of continuous T-beams with negative bending moment using UHPC instead of prestressed tendons under flexure

Runtao Dong, Yanmin Jia, Dongsheng Guo
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Abstract

In order to explore the flexural performance of the two-span simply supported to continuous T-beam using UHPC material instead of prestressed tendons in the negative bending moment zone and the effect of the UHPC material connection length on the bearing capacity of the test beam, the flexural tests of three beams with different UHPC connection lengths were carried out. The results show that by using UHPC material instead of prestressed tendons to make continuous beams in the negative bending moment region, the tensile properties and high elastic modulus characteristics of UHPC material can be better exerted. The three test beams were all resistant to bending failure, and the cracks were distributed in the two positive and negative bending moment sections. Increasing the connection length of the UHPC material will increase the distribution range of cracks and the number of cracks in the positive moment section and the cracking load in the negative moment section. The ductility was reduced. When the connection length was increased from 300 mm to 2200 mm and 2300 mm, respectively, the bearing capacity of the test beam was increased by 4% and 6%, respectively, and the mid-span ultimate displacement was reduced by 7% and 12%, respectively. The flexural performance of the test beam was improved.
负弯矩连续t梁用UHPC代替预应力筋受弯试验研究
为探索采用UHPC材料代替预应力筋的两跨简支连续t梁负弯矩区抗弯性能及UHPC材料连接长度对试验梁承载力的影响,对3根不同UHPC连接长度的梁进行了抗弯试验。结果表明:在负弯矩区用超高性能混凝土材料代替预应力筋制作连续梁,可以更好地发挥超高性能混凝土材料的抗拉性能和高弹性模量特性。3根试验梁均抗弯破坏,裂缝分布在正弯矩段和负弯矩段。增大UHPC材料的连接长度会增大正弯矩段裂缝分布范围和裂缝数量,增大负弯矩段裂缝荷载。延展性降低。当连接长度从300 mm分别增加到2200 mm和2300 mm时,试验梁的承载力分别提高了4%和6%,跨中极限位移分别降低了7%和12%。试验梁的抗弯性能得到了改善。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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