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Experimental study on obtaining hydraulic concrete strength by use of concrete piezoelectric ceramic smart module pairs

机译:利用混凝土压电陶瓷智能模块对获得水工混凝土强度的试验研究

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摘要

The concrete strength has the strong influence on service safety of mass hydraulic concrete structures. The real-time identification of concrete strength is very important to ensure the pouring quality during the construction and find timely the hidden troubles in service. Based on the analysis for the mapping relationship between concrete strength and stress wave amplitude, the method is proposed to obtain indirectly the concrete strength with self-made concrete piezoelectric ceramic smart module pairs. First, according to the service condition of hydraulic concrete structure, the concrete piezoelectric ceramic smart module is designed and the process manufacturing concrete piezoelectric ceramic smart module is presented. The protecting measures of piezoelectric ceramic piece, the peripheral material constituent, and the pouring links are introduced. Second, an integrated system, which is composed of self-made concrete piezoelectric ceramic smart modules in pair as sensor and actuator, fuzzy inference system, and other auxiliary equipments, is developed to monitor indirectly concrete strength. Its working principle is studied. Finally, an experiment of hydraulic concrete strength is implemented to demonstrate the feasibility and validity of the proposed method and developed system. The concrete piezoelectric ceramic smart modules in pair are taken as sensor and actuator embedded in hydraulic concrete specimens. The wave-based analysis method is adopted to collect the stress wave amplitude data during the pouring process of concrete specimens. The fuzzy inference approach is utilized to build the mathematical model describing the relationship between concrete strength and stress wave amplitude. Based on the above mathematical model, the concrete strength can be identified indirectly.
机译:混凝土强度对大体积水工混凝土结构的使用安全有很大影响。混凝土强度的实时识别对于确保施工期间的浇筑质量和及时发现使用中的隐患非常重要。在分析混凝土强度与应力波幅值之间的映射关系的基础上,提出了用自制的混凝土压电陶瓷智能模块对间接获得混凝土强度的方法。首先,根据水工混凝土结构的使用条件,设计了混凝土压电陶瓷智能模块,并提出了制造过程的方法。介绍了压电陶瓷片的保护措施,周边材料成分和浇注环节。其次,开发了一个综合系统,该系统由成对的传感器和执行器,模糊推理系统和其他辅助设备组成的混凝土压电陶瓷智能模块组成,以间接监测混凝土强度。研究了其工作原理。最后,进行了水工混凝土强度试验,以证明所提方法和所开发系统的可行性和有效性。将成对的混凝土压电陶瓷智能模块作为传感器和执行器,嵌入在液压混凝土试样中。在混凝土浇筑过程中采用基于波的分析方法来收集应力波幅值数据。利用模糊推理方法建立描述混凝土强度与应力波幅值之间关系的数学模型。基于上述数学模型,可以间接确定混凝土强度。

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