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首页> 外文期刊>Journal - Prestressed Concrete Institute >High-strength self-consolidating concrete girders subjected to elevated compressive fiber stresses, part 1: Prestress loss and camber behavior
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High-strength self-consolidating concrete girders subjected to elevated compressive fiber stresses, part 1: Prestress loss and camber behavior

机译:高强度自固结混凝土梁承受较高的压缩纤维应力,第1部分:预应力损失和外倾特性

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The design of prestressed concrete members is restricted by the requirement that the extreme compressive fiber stress at midspan of simply supported members be less than 60% of the concrete compressive strength at release of prestressing. The purported purpose of this limit is to address serviceability performance, but it places unnecessary limits on the capability of the materials.rnFor this research program, six prestressed concrete girders were produced with high-strength self-consolidating concrete and subjected to compressive fiber stress levels ranging from 65% to 84% of the concrete compressive strength at release of prestressing. Time-dependent concrete surface strains were measured using a mechanical strain gauge, with a focus on measuring drying creep and determining its relationship to prestress losses.rnThis research demonstrates that current American Association of State Highway and Transportation Officials load and resistance factor design prestress-loss predic-rntion methods developed for high-strength concrete overestimate losses by 18%, whereas older methods for prestress losses developed for normal-strength concrete produced more-accurate results. Based on these results and work performed by others, the authors concur with increasing the allowable compressive stress limit at any location to 70% of the concrete compressive strength at release of prestressing.
机译:预应力混凝土构件的设计受到以下要求的限制:在简单支撑构件的中跨处的极端压缩纤维应力应小于释放预应力时混凝土抗压强度的60%。此限制的目的是解决可维护性性能,但对材料的性能施加不必要的限制。对于该研究计划,使用高强度自固结混凝土生产了六个预应力混凝土梁,并承受了压缩纤维的应力水平释放预应力时,其抗压强度为混凝土抗压强度的65%至84%。使用机械应变仪测量随时间变化的混凝土表面应变,重点是测量干燥蠕变并确定其与预应力损失之间的关系。这项研究表明,美国国家公路和运输官员协会当前的荷载和阻力因子设计预应力损失为高强度混凝土开发的预测方法高估了损耗18%,而为中强度混凝土开发的较早的预应力损失方法得出的结果更准确。基于这些结果和其他人的工作,作者同意将任意位置的允许压应力极限提高到预应力释放时混凝土抗压强度的70%。

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