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首页> 外文期刊>Journal of materials in civil engineering >Experimental and Numerical Evaluation of the Parameters Influencing the Shear-Stress Behavior of Interlocking Paver Blocks-Bedding Sand Interface Using Large-Scale Direct Shear Test
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Experimental and Numerical Evaluation of the Parameters Influencing the Shear-Stress Behavior of Interlocking Paver Blocks-Bedding Sand Interface Using Large-Scale Direct Shear Test

机译:利用大规模直接剪切试验对互锁摊铺机砌块床上用砂界面剪切应力行为的实验和数值评价

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摘要

Shear strength and rutting characteristics play a vital role in the serviceability and performance of interlocking concrete block pavement (ICBP). The objective of the present research study is to evaluate the shear stress behavior of the interlocking paver block-bedding sand interface using the laboratory large-scale direct shear test. The research includes analyzing the influence of parameters such as interlocking paver block shape, laying angle, and gradation of bedding sand on the shear stress behavior of ICBP. Optimization of the influential parameter is analyzed by the response surface methodology using expert software. The relative movement between the blocks during the shear mechanism is assessed by the image processing technique using well-known mathematical software and is validated from the readings measured using a Vernier caliper. Numerical simulation is carried out using professional engineering software to validate the laboratory test results. Combined rutting of the interlocking paver block and bedding sand is estimated from the derived shear test results. The test results prove that the ICBP, when laid with zigzag shape over Zone Ⅱ bedding sand, perpendicular to the traffic movement, exhibits better shear strength and lower rutting.
机译:剪切力量和车辙特性在互锁混凝土块路面(ICBP)的可维护性和性能中起着至关重要的作用。本研究研究的目的是使用实验室大规模直接剪切测试评估互锁摊铺机嵌入式砂界面的剪切应力行为。该研究包括分析参数的影响,例如互锁摊铺块形状,铺设角度和床上用品灰度灰度的灰度抗剪切应力行为。通过使用专家软件的响应面方法分析了影响力参数的优化。通过使用众所周知的数学软件的图像处理技术评估剪切机制期间块之间的相对运动,并从使用游标卡尺测量的读数验证。使用专业工程软件进行数值模拟来验证实验室测试结果。从衍生的剪切测试结果估算了互锁摊铺机块和床上用品砂砂的组合。测试结果证明,在延伸型Ⅱ型床上砂砾的Zigzag形状时,垂直于交通运动,表现出更好的剪切强度和较低的车辙。

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