Influence of Spring Stiffness on the Loading Speed of the Falling Weight Deflectometer (FWD) in Bearing Capacity Evaluation of Cement Concrete Pavement

Van-Hieu Nguyen, V. Thuy, Cao-Thang Pham, N. Tran
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Abstract

The bearing capacity evaluation of cement concrete runway pavement is one of the most important contents in the airfield operation. Among the methods for estimating bearing capacity, the Falling Weight Deflectometer (FWD) is the most widely used method because it does not damage the pavement structure and spends so much time. The equipment for evaluation should have suitable parameters, such as. magnitude and loading speed, to the actual operating loads. Currently, the equipment to assess the bearing capacity of cement concrete pavements of highways and airports by falling weight has been widely used in the world and is being applied in Vietnam. The loading system consists of a falling block through a spring system acting on the pressure plate under the pavement with a certain falling height. In particular, the spring system plays an important role in controlling the speed of the load on the pavement. In Vietnam, the test standards (Industry Standard 22TCN335-06, Vietnamese Standard TCVN 11365-2016) for assessing the pavement bearing capacity by FWD equipment do not specify the selection of spring stiffness corresponding to different operating speeds of the vehicle. Therefore, it is difficult to use the equipment for pavements with operating speeds different from the standard. In this paper, we study the effect of spring stiffness on the loading speed when considering different loading speeds corresponding to different speeds of vehicles moving in reality. This research is only limited to laboratory experiments. This study aims to determine the dependence of the loading magnitude and loading time on the damping spring stiffness of the dynamic loading equipment, that is, used as a basis for choosing the appropriate damping stiffness of FWD corresponding to actual vehicles. Among the methods for estimating the bearing capacity, the Falling Weight Deflectometer (FWD) is the most widely used method as it does not cause any damage to the pavement structure and spends much time. The equipment for evaluation should have suitable parameters, such as magnitude and loading speed, to the actual operating loads. This paper presents the results of experimental research that determines the influence of the damping spring stiffness on the loading speed of the dynamic loading equipment on the model of the concrete slab in the laboratory. Based on the comparison of the FWD loading speed when using 02 damping springs with different stiffness, we propose the basis for choosing the damping system that conforms to the evaluation needs of different types of vehicles.
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水泥混凝土路面承载力评价中弹簧刚度对落锤挠度计加载速度的影响
水泥混凝土跑道路面承载力评价是机场运行中的重要内容之一。在现有的承载力估算方法中,下落重量偏转法(FWD)因其对路面结构不造成损伤,且耗时短,是目前应用最广泛的一种方法。用于评价的设备应具有合适的参数,如。大小和加载速度,以实际运行载荷为准。目前,采用落重法评估公路、机场水泥混凝土路面承载力的设备在国际上已得到广泛应用,越南正在应用。该加载系统由一个下落块通过弹簧系统作用于具有一定下落高度的路面下压板组成。特别是弹簧系统在控制路面荷载的速度方面起着重要的作用。在越南,用FWD设备评估路面承载能力的测试标准(行业标准22TCN335-06,越南标准TCVN 11365-2016)没有规定车辆不同行驶速度对应的弹簧刚度的选择。因此,对于运行速度与标准不同的路面,该设备难以使用。本文研究了在考虑现实中不同车辆运动速度对应的不同加载速度的情况下,弹簧刚度对加载速度的影响。这项研究仅局限于实验室实验。本研究旨在确定加载幅度和加载时间对动加载设备阻尼弹簧刚度的依赖关系,以此作为选择与实际车辆相对应的FWD阻尼刚度的依据。在现有的承载力估算方法中,下落重量偏转法(FWD)因其对路面结构无损伤且耗时短,是目前应用最广泛的一种方法。用于评估的设备应具有与实际运行载荷相适应的参数,如大小和加载速度。本文介绍了在实验室对混凝土板模型进行动加载装置加载速度的影响确定阻尼弹簧刚度的实验研究结果。通过对使用不同刚度02阻尼弹簧时FWD加载速度的比较,提出了选择符合不同类型车辆评价需求的阻尼系统的依据。
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