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Effects of Strand Anchorage Devices on Shear Strength of Pretensioned Concrete Beams

机译:钢绞线锚固装置对预应力混凝土梁抗剪强度的影响

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align="left">A series of 12 pretensioned beams were loaded to failure in the laboratory under a concentrated load, placed to produce a shear span with a length-to-depth ratio of 1.5, so as to fail the beam in shear. In? an attempt to reduce the prestress transfer length for the strands and increase the shear strength of the beam near the support, anchorage devices were attached to the ends of the prestressing strands before casting. For most beams, these devices were totally encased in concrete during the casting process. These modified beams exhibited no significant increase? in shear strength relative to otherwise identical reference beams fabricated without the devices. A final set of beams was fabricated with the anchorage devices bearing externally on the ends of the beams, and with a deliberate debonding between the strand and concrete near the ends of the beams. These girders exhibited higher failure loads and enhanced ductility, developing a very distinct strut-and-tie mechanism at failure. The study indicated the potential of strand end? anchorage to enhance shear capacity in the end regions of pretensioned girders.
机译:align =“ left”>在实验室中,在集中载荷下将一系列12张预应力梁加载到破坏中,放置该梁以产生长宽比为1.5的剪切跨度,从而使梁失效。剪。在?为了减小钢绞线的预应力传递长度并增加支撑附近梁的抗剪强度,在铸造前将锚固装置连接到预应力钢绞线的端部。对于大多数梁,在铸造过程中,这些设备完全包裹在混凝土中。这些修改后的光束没有显示出明显的增加?相对于没有装置制造的相同参考光束的抗剪强度。制造了最后一组梁,其锚固装置外部支撑在梁的端部上,并且在梁与梁之间靠近端部的混凝土之间故意脱胶。这些大梁表现出更高的破坏载荷和增强的延展性,在破坏时发展出一种非常独特的支撑和拉紧机制。研究表明潜在的链末端?锚固以增强预应力大梁末端区域的抗剪能力。

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