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Flexural behavior and crack-damage mitigation of plain concrete beam with a strain-hardening cement composite (SHCC) layer at tensile region

机译:拉伸区域具有应变硬化水泥复合材料(SHCC)层的普通混凝土梁的抗弯性能和裂缝破坏缓解

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摘要

The paper deals with the flexural and cracking behavior experimentally observed in the plain concrete beam with a hybrid polyvinyl alcohol (PVA) and polyethylene (PE) fiber reinforced strain-hardening cement composite (SHCC) layer before and after repeated freeze-thaw exposure. The influences of the SHCC layer thickness, SHCC type, and freezing-thawing cycles on the overall flexural performance of SHCC-layered concrete beams are investigated. Concrete beams, which had 100 x 100 mm rectangular cross section and 300 mm span length, were tested in four-point bending. Two kinds of SHCCs were used as layer materials for the tension zone of concrete beam. Beam specimens with two different SHCC layer thicknesses (30 mm and 50 mm) were prepared. Freezing and thawing tests of SHCC materials and SHCC-layered concrete beams followed ASTM C 666 Procedure B and continued until the specimen achieved 300 freeze-thaw cycles. Experimental study shows that when subject to monotonic flexural loading, the SHCC-layered repair system showed 2.5-3.5 times increased load carrying capacity, and mitigated cracking damage of plain concrete beam with a SHCC layer compared with plain concrete beam. The enhancement in the flexural strength and ductility is found to increase with the SHCCs tensile strain capacity and layer thickness. While the freezing and thawing exposure decreased the deflection at the ultimate flexural strength of SHCC-layered concrete beam, flexural strength of SHCC-layered beam after 300 cycles of freezing and thawing increased up to average 15% compared to that of virgin SHCC-layered concrete beam.
机译:本文处理了在反复冻融暴露前后,混合聚乙烯醇(PVA)和聚乙烯(PE)纤维增强的应变硬化水泥复合材料(SHCC)层在普通混凝土梁中实验观察到的挠曲和开裂行为。研究了SHCC层厚度,SHCC类型和冻融循环对SHCC层混凝土梁整体抗弯性能的影响。在四点弯曲中测试了具有100 x 100 mm矩形横截面和300 mm跨距长度的混凝土梁。两种SHCC用作混凝土梁受拉区的层材料。准备了具有两种不同SHCC层厚度(30毫米和50毫米)的梁样本。 SHCC材料和SHCC层状混凝土梁的冻融测试遵循ASTM C 666程序B,并持续进行至样品达到300次冻融循环。实验研究表明,在单调弯曲荷载作用下,与普通混凝土梁相比,SHCC分层修补系统的承载能力提高了2.5-3.5倍,并且减轻了带有SHCC层的普通混凝土梁的开裂损伤。发现弯曲强度和延展性的增强随着SHCC的拉伸应变能力和层厚度的增加而增加。尽管冻融暴露降低了SHCC层混凝土梁的极限抗弯强度的挠度,但与原始SHCC层混凝土相比,经过300次冻融循环后,SHCC层梁的抗弯强度平均提高了15%光束。

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