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首页> 外文期刊>Engineering Structures >Investigation of the effect of steel fibers on the shear crack-opening and crack-slip behavior of prestressed concrete beams using digital image correlation
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Investigation of the effect of steel fibers on the shear crack-opening and crack-slip behavior of prestressed concrete beams using digital image correlation

机译:用数字图像相关性研究钢纤维对预应力混凝土梁剪切开口和裂纹的开口和裂隙性的影响

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摘要

The effect of steel fiber reinforcement on the shear behavior of prestressed concrete beam is studied using digital image correlation (DIC) technique. Steel fiber reinforced prestressed concrete (SFRPC) beams with fiber dosages of 0.5% and 1.0% by volume were cast and tested under shear. SFRPC beams were tested under a three-point bending configuration at a shear span (a) to depth (d) ratio of 2.4 to simulate shear dominant behavior. Other parameters such as compressive strength of concrete, prestressing reinforcement ratio and level of prestressing were kept constant. The kinematics of diagonal shear cracks including crack opening and crack slip were monitored using DIC based full-field strain measurement technique. The improvement in aggregate interlock and residual tensile strength at the crack tip due to the addition of steel fiber was reflected in the post-peak response of SFRPC beams. DIC analysis revealed that the full depth crack was formed in all the SFRPC beams before reaching their peak loads. The dilatant behavior was found to be consistent for all the test specimens (control and fiber reinforced concrete beams) up to peak load. The test results portray that the addition of steel fibers stiffens the post-peak response and reduces the crack opening and crack slip. Moreover, the failure mode changed from shear (brittle) to flexure-shear (less brittle) mode.
机译:利用数字图像相关(DIC)技术研究了钢纤维增强对预应力混凝土梁剪切行为的影响。铸钢纤维增强的预应力混凝土(SFRPC)梁铸造纤维剂量为0.5%和1.0重量%,并在剪切下进行测试。在剪切跨度(a)的三点弯曲构型下测试SFRPC光束,深度(d)比为2.4以模拟剪切主导行为。其他参数如混凝土,预应力增强比和预应力水平的抗压强度保持恒定。在基于DIC的全场应变测量技术监测了对角剪切裂纹的运动学,包括裂缝开口和裂纹滑移。在SFRPC梁的后峰值响应中反映了由于添加钢纤维的裂纹尖端的聚集互锁和残余拉伸强度的改善。 DIC分析显示,在达到其峰值载荷之前,在所有SFRPC梁中形成全深度裂缝。发现抗膨胀性行为对于所有测试试样(控制和纤维钢筋混凝土梁)保持一致的峰值负荷。测试结果描绘了钢纤维加入后峰值响应并减少裂缝开口和裂纹滑动。此外,故障模式从剪切(脆性)变为弯曲剪切(较少的脆性)模式。

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