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NC-UHPC Composite Structure for Long-Term Creep-Induced Deflection Control in Continuous Box-Girder Bridges

机译:连续箱梁桥长期蠕变挠度控制的NC-UHPC复合结构

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An innovative normal concrete (NC) with partial use of ultrahigh-performance concrete (UHPC) composite structure is proposed in this paper to reduce the long-term creep-induced deflection in continuous box-girder bridges. The creep properties of NC-UHPC composite columns were experimentally investigated, and test results showed that the creep coefficients in NC-UHPC composite columns decreased considerably compared with NC columns. A creep computational model of the NC-UHPC composite was further developed to describe long-term creep behaviors of the composite columns in good agreement with the test results. Based on the proposed creep model, the long-term behaviors of a long-span box-girder bridge, made of the NC-UHPC composite, were evaluated by finite-element analysis (FEA), and the influences of the UHPC area fraction and the length of embedded precast UHPC columns were also discussed. Compared with the traditional prestressed concrete (PC) box girder, the long-term creep-induced deflection at the midspan of the NC-UHPC composite bridge reduced by 54.5%. The NC-UHPC composite is, therefore, conceived to be one of effective solutions for long-term creep-induced deflection control of long-span continuous PC box-girder bridges. (c) 2018 American Society of Civil Engineers.
机译:本文提出了一种创新的普通混凝土(NC),部分使用超高性能混凝土(UHPC)复合结构,以减少连续箱梁桥的长期蠕变引起的挠度。对NC-UHPC复合柱的蠕变特性进行了实验研究,测试结果表明,与NC柱相比,NC-UHPC复合柱的蠕变系数大大降低。进一步开发了NC-UHPC复合材料的蠕变计算模型,以描述与测试结果非常吻合的复合材料柱的长期蠕变行为。在提出的蠕变模型的基础上,通过有限元分析(FEA)评估了由NC-UHPC复合材料制成的大跨度箱梁桥的长期性能,以及UHPC面积分数和还讨论了嵌入式预制UHPC柱的长度。与传统的预应力混凝土(PC)箱梁相比,NC-UHPC复合桥中跨的长期蠕变引起的挠度降低了54.5%。因此,NC-UHPC复合材料被认为是大跨度连续PC箱梁桥长期蠕变引起的挠度控制的有效解决方案之一。 (c)2018年美国土木工程师学会。

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