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    • 3. 发明授权
    • Composite girder for bridge construction
    • 桥梁施工复合梁
    • US08544129B2
    • 2013-10-01
    • US13808582
    • 2011-04-01
    • Yong-seock Won
    • Yong-seock Won
    • E01D2/00
    • E01D2/00E01D2/02E01D2/04E01D2101/268E04C3/293E04C3/46
    • The present invention pertains to a composite girder for bridge construction. More preferably, a girder is formed in a rectangular shape that is horizontally long and opened at the top portion thereof, wherein the girder is convexly curved in the center so as to be formed in the shape of an arch. The girder has a compression section, a web and a tension section, which are integrally composed together, and is filled with concrete inside the girder so as to increase the sectional strength of the girder. Simultaneously, a stopper is formed on the inside surface of the compression section to prevent the separation of the steel materials and the concrete.
    • 本发明涉及用于桥梁结构的复合梁。 更优选地,梁形成为在其顶部处水平长并且开口的矩形形状,其中,所述梁在中心处以凸形弯曲形成为拱形。 该梁具有一体地组合在一起的压缩部分,腹板和张紧部分,并且在梁内部填充有混凝土,以增加梁的截面强度。 同时,在压缩部分的内表面上形成止挡件,以防止钢材和混凝土分离。
    • 7. 发明授权
    • Plasticon-optimized composite beam system
    • 塑料优化复合梁系统
    • US06145270A
    • 2000-11-14
    • US65191
    • 1998-04-23
    • John Hillman
    • John Hillman
    • E01D2/00E01D2/02E04C3/29E04C3/02
    • E04C3/29E01D2/00E01D2/02E01D2101/24E01D2101/40
    • A composite beam system that can be used for the framing system in bridges or buildings and provide enhanced corrosion protection includes a fiber reinforced plastic beam shell with compression and tension reinforcement. The compression reinforcement consists of portland cement concrete which is pumped into a profiled conduit within the beam shell. The conduit for the compression reinforcement is profiled to optimally resist the internal forces in the composite beam for a particular loading. The tension reinforcement consists of carbon, glass or steel fibers anchored by wrapping around the ends of the compression reinforcement. The positioning of the tension reinforcement is optimally designed to equilibrate the internal forces in the compression reinforcement. Each composite beam has a series of internal vertical stiffeners which are perpendicular to the sides of the beam shell. The composite beams can be used in the construction of bridges and buildings using conventional erection techniques. The compression reinforcement can be installed into the beam after it is erected. This results in a very light weight structural member for transportation and erection.
    • 可用于桥梁或建筑物中的框架系统并提供增强的防腐蚀的复合梁系统包括具有压缩和拉伸增强的纤维增强塑料梁壳。 压缩加固由波特兰水泥混凝土组成,泵入泵梁内的成型管道中。 用于压缩加固件的导管被成型以最佳地抵抗组合梁中的特定负载的内力。 张力增强由碳纤维,玻璃纤维或钢纤维组成,通过围绕压缩增强件的端部缠绕而锚定。 张力增强件的定位是最佳设计的,以平衡压缩钢筋中的内力。 每个复合梁具有垂直于梁壳的侧面的一系列内部垂直加强件。 复合梁可以用于使用常规架设技术的桥梁和建筑物的建造。 压缩加固件可以在竖立后安装到梁上。 这导致用于运输和架设的非常轻的结构构件。