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Impact of using higher strength concrete on the design of prestressed concrete bridges

机译:使用高强度混凝土对预应力混凝土桥梁设计的影响

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AASHTO highway live loads are sometimes increased to idealize more realistic traffic conditions. Certain regions in the Middle East require increasing the AASHTO HL93 live loads by a 1.5 factor based on comparisons with the British Standards HA + HB live loads. Even in the US, the AASHTO live loads may not always represent modern state-legislated truck configurations. This paper shows the impact of using higher strength concrete on the design of precast, prestressed girders subjected to stringent loading and environmental conditions. A parametric study that relates the girder size and spacing to the span length for HL93 and 1.5 × HL93 live loads as a function of the concrete 28-day strength and environmental classifications is conducted for this purpose. It is shown that increasing the 28-day concrete strength from 40 (5800) to 50 MPa (7200 psi) allow increasing the HL93 live load by 50% and reducing the service load tension stress limit from 0.5√f'_c, MPa (6√f'_c, psi) to zero without drastically changing the precast girder size and configuration.
机译:AASHTO高速公路的活载有时会增加以理想化更现实的交通状况。根据与英国标准HA + HB的活载比较,中东的某些地区要求将AASHTO HL93的活载增加1.5倍。即使在美国,AASHTO的活载也不一定总是代表现代州立法规定的卡车配置。本文显示了在承受严格载荷和环境条件的情况下,使用高强度混凝土对预制,预应力大梁设计的影响。为此,进行了参数研究,将梁的大小和间距与HL93和1.5×HL93活荷载的跨度长度相关联,以作为28天混凝土强度和环境分类的函数。结果表明,将28天混凝土强度从40(5800)增加到50 MPa(7200 psi),可以使HL93活荷载增加50%,并将使用荷载拉应力极限从0.5√f'_c,MPa(6 √f'_c,psi)设置为零,而无需大幅度更改预制梁的尺寸和配置。

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