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Experimental Study on Shear Performance of Cast-In-Place Ultra-High Performance Concrete Structures

机译:现浇超高性能混凝土结构抗剪性能的试验研究

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摘要

In order to study the direct shear properties of ultra-high performance concrete (UHPC) structures, 15 Z-shaped monolithic placement specimens (MPSs) and 12 Z-shaped waterjet treated specimens (WJTSs) were tested to study the shear behavior and failure modes. The effects of steel fiber shape, steel fiber volume fraction and interface treatment on the direct shear properties of UHPC were investigated. The test results demonstrate that the MPSs were reinforced with steel fibers and underwent ductile failure. The ultimate load of the MPS is about 166.9% of the initial cracking load. However, the WJTSs failed in a typical brittle mode. Increasing the fiber volume fraction significantly improves the shear strength, which can reach 24.72 MPa. The steel fiber type has little effect on the shear strength and ductility, while increasing the length of steel fibers improves its ductility and slightly reduces the shear strength. The direct shear strength of the WJTSs made from 16 mm hooked-type steel fibers can reach 9.15 MPa, which is 2.47 times the direct shear strength of the specimens without fibers. Finally, an interaction formula for the shear and compressive strength was proposed on the basis of the experimental results, to predict the shear load-carrying capacity of the cast-in-place UHPC structures.
机译:为了研究超高性能混凝土(UHPC)结构的直接剪切特性,测试了15个Z形整体式放置标本(MPS)和12个Z形水射流处理的标本(WJTS),以研究剪切行为和破坏模式。研究了钢纤维形状,钢纤维体积分数和界面处理对UHPC直接剪切性能的影响。测试结果表明,MPS用钢纤维增强并遭受了韧性破坏。 MPS的极限载荷约为初始裂化载荷的166.9%。但是,WJTS在典型的脆性模式下失败。增加纤维体积分数可显着提高剪切强度,可达到24.72 MPa。钢纤维类型对剪切强度和延展性影响很小,而增加钢纤维的长度可改善其延展性,并略有降低剪切强度。由16 mm钩型钢纤维制成的WJTS的直接剪切强度可以达到9.15 MPa,是没有纤维的样品的直接剪切强度的2.47倍。最后,基于实验结果,提出了抗剪强度和抗压强度的相互作用公式,以预测现浇UHPC结构的剪力承载能力。

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