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基于压电陶瓷智能骨料的钢管内填砂冲击过程应力监测试验研究

Experimental Study on Stress Monitoring of Sand-Filled Steel Tube during Impact Using Piezoceramic Smart Aggregates.

作者信息

Du Guofeng, Zhang Juan, Zhang Jicheng, Song Gangbing

机构信息

School of Urban Construction, Yangtze University, Jingzhou 434000, China.

Department of Mechanical Engineering, University of Houston, Houston, TX 77204, USA.

出版信息

Sensors (Basel). 2017 Aug 22;17(8):1930. doi: 10.3390/s17081930.

Abstract

The filling of thin-walled steel tubes with quartz sand can help to prevent the premature buckling of the steel tube at a low cost. During an impact, the internal stress of the quartz sand-filled steel tube column is subjected to not only axial force but also lateral confining force, resulting in complicated internal stress. A suitable sensor for monitoring the internal stress of such a structure under an impact is important for structural health monitoring. In this paper, piezoceramic Smart Aggregates (SAs) are embedded into a quartz Sand-Filled Steel Tube Column (SFSTC) to monitor the internal structural stress during impacts. The piezoceramic smart aggregates are first calibrated by an impact hammer. Tests are conducted to study the feasibility of monitoring the internal stress of a structure. The results reflect that the calibration value of the piezoceramic smart aggregate sensitivity test is in good agreement with the theoretical value, and the output voltage value of the piezoceramic smart aggregate has a good linear relationship with external forces. Impact tests are conducted on the sand-filled steel tube with embedded piezoceramic smart aggregates. By analyzing the output signal of the piezoceramic smart aggregates, the internal stress state of the structure can be obtained. Experimental results demonstrated that, under the action of impact loads, the piezoceramic smart aggregates monitor the compressive stress at different locations in the steel tube, which verifies the feasibility of using piezoceramic smart aggregate to monitor the internal stress of a structure.

摘要

在薄壁钢管中填充石英砂有助于以低成本防止钢管过早屈曲。在冲击过程中,填充石英砂的钢管柱内部应力不仅承受轴向力,还承受横向约束力,导致内部应力复杂。一种适用于监测此类结构在冲击下内部应力的传感器对于结构健康监测至关重要。本文将压电陶瓷智能骨料(SAs)嵌入石英砂填充钢管柱(SFSTC)中,以监测冲击过程中的内部结构应力。首先用冲击锤对压电陶瓷智能骨料进行校准。进行试验以研究监测结构内部应力的可行性。结果表明,压电陶瓷智能骨料灵敏度试验的校准值与理论值吻合良好,压电陶瓷智能骨料的输出电压值与外力具有良好的线性关系。对嵌入压电陶瓷智能骨料的填充砂钢管进行冲击试验。通过分析压电陶瓷智能骨料的输出信号,可以获得结构的内部应力状态。实验结果表明,在冲击载荷作用下,压电陶瓷智能骨料监测钢管不同位置的压应力,验证了利用压电陶瓷智能骨料监测结构内部应力的可行性。

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