首页> 外文会议>ASME joint rail conference >EFFECT OF PRESTRESSING WIRE INDENTATION TYPE ON THE BOND PERFORMANCE AND FLEXURAL CAPACITY OF PRETENSIONED CONCRETE CROSSTIES SUBJECTED TO CYCLIC LOADING
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EFFECT OF PRESTRESSING WIRE INDENTATION TYPE ON THE BOND PERFORMANCE AND FLEXURAL CAPACITY OF PRETENSIONED CONCRETE CROSSTIES SUBJECTED TO CYCLIC LOADING

机译:预应力线压痕型对循环载荷预紧混凝土串联粘接性能和弯曲能力的影响

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Load tests were conducted on pretensioned concrete prisms cast with 13 different 5.32-mm-diameter prestressing wire types that are used in the manufacture of pretensioned concrete railroad ties worldwide. The tests were specifically designed to evaluate the bond performance of wires with different indentation type under the cyclic loading. The prestressing wires were denoted "WA" through "WM" and indentation types included smooth, spiral, chevron, diamond, 2-dot and 4-dot. Four wires were embedded into each concrete prism, which had a 3.5" (88.9 mm) × 3.5" (88.9 mm) square cross section. The wires were initially pulled to 7000 pounds (31.14 KN) and gradually de-tensioned when the concrete compressive strength reached 4500 psi (31.03 MPa). A consistent concrete mixture with type III cement, water-cement ratio of 0.32 and a 6-in. slump was used for all prisms. For each type of wire one 69 in-long (175.26 cm) prism was tested in 4-point-bending under the cyclic load and one under static load at 20-in (50.8 cm) embedment length. For cyclic load tests, the prisms were supported by two rollers spanning 45" (114.3 cm) and load was applied on a spreading beam set on the top of the test prism. The prism setup and loading configuration were symmetric and load was applied to the prism from spreading beam to two bearings spaced 15" (38.1 cm) apart. During each test, a concentrated load with the rate of 250 lb/min (1112 N/min) was applied until two cracks were observed at the maximum moment region on the test prisms (region between two bearings). Once cracks were observed, the load was held constant for 3 minutes at the cracking load. After holding load constant for three minutes, load started to cycle between 400 lb (1779 N) to 4000 lb (17790 N) with the frequency of 3 Hz. The test was designed to go through 200,000 cycles and interlock limits were assigned to the program to stop the test in case of prism failure under the cyclic loading. For prisms able to finish 200,000 cycles of load, the procedure was to unload to zero and start loading the prism with the rate of 250 lb/min (1112 N/min) until prism failed. Values of load, mid-span deflection, and wires end-slip were continuously monitored and recorded during each test. Load-vs-deflection graphs were then plotted and compared for prisms with each wire type, and the maximum sustained moment was also calculated for each test. Also, a set of statically load tests were conducted on the identical pretensioned prisms to compare the results of statically and cyclically load tests. The cyclic load tests revealed that there is a significant difference in the bond performance of different wire types under the cyclic loading and they behave differently under cycles of loadings and un-loadings.
机译:用13种不同5.32毫米直径预应力线类型的预张紧混凝土棱镜进行负载试验,用于制造全球预张紧混凝土钢铁领域。该测试专门设计用于在循环载荷下评估电线的粘合性能。预应力导线通过“WM”表示“WM”,压痕类型包括光滑,螺旋,雪佛龙,钻石,2点和4点。将四根电线嵌入每个混凝土棱镜中,具有3.5“(88.9毫米)×3.5”(88.9毫米)方横截面。当混凝土抗压强度达到4500psi(31.03MPa)时,电线最初被拉到7000磅(31.14kN)并逐渐去张紧。一致的混凝土混合物,具有III型水泥,水水柱比为0.32和6 in。萧条被用于所有棱镜。对于每种类型的电线,在循环负载下在4点弯曲的情况下在循环载荷下进行4次,在20英寸(50.8cm)嵌入长度下的静载荷下进行4点弯曲。对于循环负载测试,棱镜由跨越45“(114.3cm)的两个辊子支撑,并且在测试棱镜顶部的展示梁上施加负荷。棱镜设置和装载配置是对称的,并且载入负载棱镜从蔓延到两个轴承间隔开15“(38.1厘米)。在每个试验中,施加的250磅/分(1112 N /分钟)的速率集中负载,直到在最大力矩区域中观察到对测试棱晶(两个轴承之间的区域)两条裂缝。一旦观察到裂缝,载荷在裂化载荷下保持恒定3分钟。保持负载常数三分钟后,负载开始在400磅(1779℃)至4000磅(17790N)之间,频率为3 Hz。该测试被设计为经过200,000个循环,并分配联锁限额,以在循环载荷下的棱镜故障时停止测试。对于能够完成200,000个负载循环的棱镜,该程序是卸载到零,并开始将棱镜加载到250磅/分钟(1112 n / min,直到棱镜失败。负载值,中间跨度偏转和电线终端滑动在每次测试期间连续监测和记录。然后绘制负载VS偏转图并将其与每个线型的棱镜进行比较,并且还计算每个测试的最大持续时刻。此外,在相同的预张紧棱镜上进行了一组静态负载测试,以比较静态和循环负载测试的结果。循环载荷试验显示,在循环载荷下不同丝网的粘合性能存在显着差异,并且它们在载荷和联管循环下行事不同。

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