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The Mechanical Properties of Reinforced Concrete Plate-Girders when Placed Under Repeated Simulated Vehicle Loads

机译:反复模拟车辆荷载作用下钢筋混凝土板梁的力学性能

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摘要

The effect of vehicle loads on reinforced concrete plate-girders was evaluated using the current Chinese specifications. Repeated loading performance tests with loading amplitudes of 77 kN, 97 kN, and 121 kN, which correspond to the standard vehicle load, 1.25 times overload, and 1.6 times overload proportions effect were carried out on three full-scale simply-supported reinforced concrete plate-girders. Our research results indicate that the development of cracks in reinforced concrete beams can be divided into three stages: rapid development, stability, and failure. During the entire process, the strain of steel and concrete did not reach their yield strain. The most severe damage done to the concrete beams was the brittle fractures caused by the fatigue fracturing of the rebar. When in a stable condition, the extent to which the vehicle was overloaded had a significant effect on the fatigue performance of the beam, and the corresponding residual deflection and residual strain increased with the rise in the overload proportion. In addition, as the overload proportion increased, the stiffness degradation and the cumulative damage that occurred under the same loading cycle was more significant. The test beam reached failure after being subjected to 350,000 and 670,000 repeated loading cycles, when the load was 1.6 times and 1.25 times of the standard load effect. With a standard vehicle load effect, the test beam was able to endure 2,000,000 repeated load cycles with no significant degradation in stiffness and bearing capacity.
机译:使用当前的中国规范评估了车辆载荷对钢筋混凝土板梁的影响。对三个全尺寸简支钢筋混凝土板进行了分别对应于标准车辆载荷,分别为77 kN,97 kN和121 kN的载荷幅度的重复载荷性能测试,分别得出1.25倍的过载和1.6倍的过载比例。 -大梁。我们的研究结果表明,钢筋混凝土梁裂缝的发展可分为三个阶段:快速发展,稳定和破坏。在整个过程中,钢和混凝土的应变未达到其屈服应变。对混凝土梁的最严重破坏是钢筋疲劳断裂引起的脆性断裂。在稳定状态下,车辆超载的程度对梁的疲劳性能有重大影响,并且相应的残余挠度和残余应变随着超载比例的增加而增加。另外,随着过载比例的增加,在相同的载荷循环下发生的刚度下降和累积损伤更加明显。在承受350,000和670,000次重复加载循环后,当测试梁的载荷是标准载荷效应的1.6倍和1.25倍时,测试梁达到了失效。在标准的车辆载荷作用下,测试梁能够承受2,000,000次重复载荷循环,而刚度和承载能力没有明显下降。

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