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Experimental study on shear behavior of prestressed reactive powder concrete l-girders

机译:预应力活性粉末混凝土L型梁的抗剪性能试验研究。

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摘要

As a new generation of concrete, RPC(Reactive Powder Concrete) has attracted great research attention for its ultra-high strength and high durability. In the present paper, experimental results from tests on eight prestressed RPC I-section girders failing in shear are reported herein. The beams with RPC of 120 MPa in compression were designed to assess the ability to carry shear stress in thin webbed prestressed beams with stirrups. The test variables were the level of prestressing, shear span-depth ratio (a/d) and stirrup ratio. Shear deformation, shear capacity and crack pattern were experimentally investigated in detail. With regard to the shear resistance of the test beams, the predictions from three standards (AFGC, JSCE and SIA) on the design of UHPC structures were compared with the experimental result suggesting that the experimental strength is almost always higher than predicted. RPC, as a new concrete, was different from normal concrete and fiber reinforced concrete. Further study should be needed to develop an analytical method and computation model for shear strength of RPC beams.
机译:作为新一代混凝土,RPC(活性粉末混凝土)以其超高强度和高耐久性而引起了广泛的研究关注。在本文中,本文报道了对八个预应力RPC I型截面梁进行剪切试验的实验结果。设计RPC压缩为120 MPa的梁,以评估带有箍筋的薄网状预应力梁承载剪切应力的能力。测试变量为预应力水平,剪切跨度-深度比(a / d)和箍筋比。对剪切变形,剪切能力和裂纹模式进行了详细的实验研究。关于测试梁的抗剪强度,将三种标准(AFGC,JSCE和SIA)对UHPC结构设计的预测与实验结果进行了比较,表明实验强度几乎总是高于预期。 RPC作为一种新混凝土,不同于普通混凝土和纤维增强混凝土。 RPC梁抗剪强度的分析方法和计算模型需要进一步研究。

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