W. Wahyuni, Herri Mahyar
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引用次数: 0

摘要

Keude Ranto Peureulak大桥连接Keude Ranto Panjang与Keude Geurobak村和东亚齐地区Ranto Peureulak街道的其他村庄。Keude Ranto Peureulak大桥计划跨度为20.8米,宽度为7米。桥的纵轴为后拉伸预处理型混凝土梁。梁的平面设计包括尺寸标注、应力计算、预应力损失、截面承载力、挠度控制和制图。使用的混凝土质量为fc = 40 Mpa,使用的肌腱为直径为1 / 2英寸的7股钢丝,带直径为51 mm的肌腱护套。肌腱fpu电压= 1860 Mpa, fy螺纹钢筋= 320 Mpa,素钢钢筋fy = 240 Mpa,有效截面高度为0.9 m。从计算结果中得到了第三种组合计算中2563,439 kNm主梁的弯矩。计算得到的腱数为3根,每根腱上有7根钢绞线。总预应力损失为380,694 Mpa。主基准采用D13 mm,抗剪配筋在支护区采用Ø10-100 mm,在场区采用Ø10-600 mm。经第三组合计算,预应力梁的极限弯矩承载力为5575.60 kNm。由于两个载荷的组合,最大挠度为0.0247米。所得到的计算结果都是可以安全使用的。关键词:梁,预应力,筋,钢筋,挠度
本文章由计算机程序翻译,如有差异,请以英文原文为准。
PERENCANAAN GELAGAR BETON PRATEGANG PADA JEMBATAN KEUDE RANTO PEUREULAK KABUPATEN ACEH TIMUR
Keude Ranto Peureulak Bridge a bridge connecting Keude Ranto Panjang with Keude Geurobak village and other villages in Ranto Peureulak Sub-district, East Aceh District. Keude Ranto Peureulak Bridge is planned with a span length of 20.8 meters and width of 7 meters. The longitudinal axis planned for the bridge is the posttractive pretreat type concrete girder. The girder plan includes gelagar dimensioning, stress calculation, prestress loss, cross-sectional capacity, deflection control, and drawing. The quality of concrete used is fc = 40 Mpa, the tendon used is seven wire strand diameter ½ inch with 51 mm diameter tendon sheath. Tendon fpu voltage = 1860 Mpa, fy threaded steel reinforcement = 320 Mpa, plain steel reinforcement fy = 240 Mpa, and efficient cross-sectional height is 0.9 meters. From the calculation results obtained the moment that occurred on the girder of 2563,439 kNm on the calculation of the third combination. The number of tendons obtained from the calculation is 3 pieces with 7 pieces of strand on each tendon. Losing the total prestress force is 380,694 Mpa. The principal reference is used D13 mm, the shear reinforcement is used Ø10-100 mm at the support area and Ø10-600 mm in the field area. The ultimate moment capacity of the prestress beam is 5575.60 kNm from the calculation of the third combination. The largest deflection of 0.0247 meters due to a combination of two loads. All the results of the calculations obtained are safe to use.Keywords: girder, prestress, tendon, reinforcement, deflection
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