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Innovative Bridge Construction Program: Implementation of Full-Depth Bridge Deck Panels in Indiana

机译:创新桥梁建设计划:印第安纳州全深度桥甲板小组的实施

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摘要

This research evaluates the use of precast, prestressed bridge deck panels on new and existing precast, prestressed concrete girders. The evaluation focuses on the ease of construction and the ability of the system to develop composite action with the concrete girders. A system developed by the Connecticut Department of Transportation (CDOT) and Precast/Prestressed Concrete Institute New England Region (PCINER) was chosen for testing from available systems because it is representative of the current geometry of precast bridge deck panels. The CDOT system was evaluated in a series of large scale tests in which the panels were placed on a 40 ft prestressed concrete girder and subjected to three point loading. The CDOT system is compared to a new system developed as part of the research program. The new system addresses durability and ease of construction issues that are problematic with current joint details. The strength and geometry of both the current and new joint details are evaluated and compared in a series of direct shear tests. A final, large scale specimen was designed, constructed, and loaded to evaluate the new system. It was concluded that the behavior of the new system is comparable to that of the CDOT system. In addition, the new system is easy to construct and minimizes deck penetrations, thereby enhancing durability. This research has the potential to impact the way in which the aging highway system is rehabilitated and replaced by reducing the associated time and costs of construction while decreasing disruption to the traveling public.
机译:本研究评估了预制,预应力桥甲板面板对新的和现有预制预应力混凝土梁的使用。评估侧重于易于建设和系统与混凝土梁开发复合动作的能力。由康涅狄格州运输部(CDOT)和预制/预应力混凝土研究所开发的系统,新英格兰地区(PCINER)被选中用于可用系统测试,因为它代表了预制桥甲板面板的当前几何形状。 CDOT系统在一系列大规模试验中评估,其中将面板放在40英尺预应力的混凝土梁上并进行三点载荷。将CDOT系统与作为研究计划的一部分开发的新系统进行比较。新系统解决了与当前联合细节有问题的耐用性和易于施工问题。在一系列直接剪切测试中评估了电流和新的关节细节的强度和几何形状。设计,构建和装载最终的大规模标本,以评估新系统。得出结论,新系统的行为与CDOT系统的行为相当。此外,新系统易于构造并最小化甲板穿透,从而提高耐用性。该研究有可能影响老化公路系统恢复和取代的方式,通过降低施工的相关时间和成本,同时降低对旅行公众的干扰。

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