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基于自感知纳米复合材料的新型动态称重路面传感器用于车辆荷载识别:开发、性能测试和验证。

Novel Weigh-in-Motion Pavement Sensor Based on Self-Sensing Nanocomposites for Vehicle Load Identification: Development, Performance Testing, and Validation.

机构信息

School of Qilu Transportation, Shandong University, Jinan 250002, China.

出版信息

Sensors (Basel). 2023 May 15;23(10):4758. doi: 10.3390/s23104758.

Abstract

The development of the transportation industry has led to an increasing number of overloaded vehicles, which reduces the service life of asphalt pavements. Currently, the traditional vehicle weighing method not only involves heavy equipment but also has a low weighing efficiency. To deal with the defects in the existing vehicle weighing system, this paper developed a road-embedded piezoresistive sensor based on self-sensing nanocomposites. The sensor developed in this paper adopts an integrated casting and encapsulation technology, in which an epoxy resin/MWCNT nanocomposite is used for the functional phase, and an epoxy resin/anhydride curing system is used for the high-temperature resistant encapsulation phase. The compressive stress-resistance response characteristics of the sensor were investigated by calibration experiments with an indoor universal testing machine. In addition, the sensors were embedded in the compacted asphalt concrete to validate the applicability to the harsh environment and back-calculate the dynamic vehicle loads on the rutting slab. The results show that the response relationship between the sensor resistance signal and the load is in accordance with the GaussAmp formula. The developed sensor not only survives effectively in asphalt concrete but also enables dynamic weighing of the vehicle loads. Consequently, this study provides a new pathway to develop high-performance weigh-in-motion pavement sensors.

摘要

交通运输业的发展导致了越来越多的超载车辆,这降低了沥青路面的使用寿命。目前,传统的车辆称重方法不仅涉及重型设备,而且称重效率也很低。为了解决现有车辆称重系统的缺陷,本文开发了一种基于自感知纳米复合材料的道路嵌入式压阻式传感器。本文研制的传感器采用整体浇注封装技术,其中采用环氧树脂/MWCNT 纳米复合材料作为功能相,环氧树脂/酸酐固化体系作为耐高温封装相。通过室内万能试验机的标定实验,研究了传感器的压阻响应特性。此外,将传感器嵌入压实的沥青混凝土中,以验证其在恶劣环境中的适用性,并反算车辙板上的动态车辆荷载。结果表明,传感器电阻信号与荷载的响应关系符合高斯安培公式。所开发的传感器不仅能有效地在沥青混凝土中生存,而且还能实现车辆荷载的动态称重。因此,本研究为开发高性能的动态称重路面传感器提供了新途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/305f/10221636/6c6caa28a554/sensors-23-04758-g001.jpg

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