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Optimization studies of self-sensing composites

机译:自感复合材料的优化研究

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摘要

The demand for real-time or in situ structural health monitoring has stimulated efforts to integrate self and environmental sensing capabilities into structural composite materials. Essential to the application of smart composites is the issue of the mechanical coupling of the sensor to the host material. In this study various methods of embedding sensors within the host composite material are examined. Quasi-static three-point bending (short beam) and fatigue three-point bending (short beam) tests are conducted in order to characterize the effects of introducing the sensors or suitable simulated sensors. The sensors that are examined include simulated sensors in the form of chip resistors with the original packaging geometry and thin film sensors (PVDF). The sensors are integrated into the composite either by placement between the layers of prepreg or by placement within precision punched cut-outs of the prepreg material. Thus, through these tests we determine the technique that optimizes the mechanical properties of the host composite material.
机译:对实时或原位结构健康监测的需求刺激了将自我和环境感知功能集成到结构复合材料中的努力。智能复合材料的应用必不可少的是传感器与主体材料的机械耦合问题。在这项研究中,研究了将传感器嵌入主体复合材料的各种方法。进行准静态三点弯曲(短梁)和疲劳三点弯曲(短梁)测试,以表征引入传感器或合适的模拟传感器的效果。检查的传感器包括具有原始包装几何形状的片式电阻器形式的模拟传感器和薄膜传感器(PVDF)。传感器通过放置在预浸料之间的层中或放置在预浸料的精密冲孔中而集成到复合材料中。因此,通过这些测试,我们确定了优化主体复合材料机械性能的技术。

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