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Use of Finite Elements Analysis for a Weigh-in-Motion Sensor Design

机译:在运动称重传感器设计中使用有限元分析

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High speed weigh-in-motion (WIM) sensors are utilized as components of complex traffic monitoring and measurement systems. They should be able to determine the weights on wheels, axles and vehicle gross weights, and to help the classification of vehicles (depending on the number of axles). WIM sensors must meet the following main requirements: good accuracy, high endurance, low price and easy installation in the road structure. It is not advisable to use cheap materials in constructing these devices for lower prices, since the sensors are normally working in harsh environmental conditions such as temperatures between −40 °C and +70 °C, dust, temporary water immersion, shocks and vibrations. Consequently, less expensive manufacturing technologies are recommended. Because the installation cost in the road structure is high and proportional to the WIM sensor cross section (especially with its thickness), the device needs to be made as flat as possible. The WIM sensor model presented and analyzed in this paper uses a spring element equipped with strain gages. Using Finite Element Analysis (FEA), the authors have attempted to obtain a more sensitive, reliable, lower profile and overall cheaper elastic element for a new WIM sensor.
机译:高速运动称重(WIM)传感器被用作复杂交通监控和测量系统的组件。他们应该能够确定车轮,车轴和车辆的总重,并有助于车辆的分类(取决于车轴的数量)。 WIM传感器必须满足以下主要要求:精度高,耐用性高,价格低并且易于在道路结构中安装。不建议使用便宜的材料来以较低的价格构造这些设备,因为传感器通常在恶劣的环境条件下工作,例如温度介于−40°C和+70°C之间,灰尘,暂时浸入水中,受到冲击和振动。因此,建议使用较便宜的制造技术。由于道路结构中的安装成本很高,并且与WIM传感器的横截面成比例(特别是与WIM传感器的厚度成正比),因此需要使设备尽可能平整。本文介绍和分析的WIM传感器模型使用装有应变计的弹簧元件。使用有限元分析(FEA),作者已尝试为新型WIM传感器获得更灵敏,可靠,外形更小且总体上更便宜的弹性元件。

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