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Flexible Multiscale Pore Hybrid Self-Powered Sensor for Heart Sound Detection

机译:灵活的Mulsiscale孔混合自动传感器用于心声检测

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摘要

This research introduces an idea of producing both nanoscale and microscale pores in piezoelectric material, and combining the properties of the molecular β-phase dipoles in ferroelectric material and the space charge dipoles in order to increase the sensitivity of the sensor and modulate the response frequency bandwidth of the material. Based on this idea, a bi-nano-micro porous dual ferro-electret hybrid self-powered flexible heart sound detection sensor is proposed. Acid etching and electrospinning were the fabrication processes used to produce a piezoelectric film with nanoscale and microscale pores, and corona poling was used for air ionization to produce an electret effect. In this paper, the manufacturing process of the sensor is introduced, and the effect of the porous structure and corona poling on improving the performance of the sensor is discussed. The proposed flexible sensor has an equivalent piezoelectric coefficient d33 of 3312 pC/N, which is much larger than the piezoelectric coefficient of the common piezoelectric materials. Experiments were carried out to verify the function of the flexible sensor together with the SS17L heart sound sensor (BIOPAC, Goleta, CA, USA) as a reference. The test results demonstrated its practical application for wearable heart sound detection and the potential for heart disease detection. The proposed flexible sensor in this paper could realize batch production, and has the advantages of flexibility, low production cost and a short processing time compared with the existing heart sound detection sensors.
机译:本研究介绍了在压电材料中产生纳米级和微观孔的思想,并将分子β相偶极物的性质组合在铁电材料和空间电荷偶极子中,以提高传感器的灵敏度并调制响应频率带宽材料。基于该思想,提出了一种双纳米微多孔双铁驻硅混合动力自动柔性心声检测传感器。酸蚀刻和静电纺丝是用于生产带纳米级和微观孔的压电膜的制造方法,并且电晕抛光用于空气电离以产生驻极体效果。本文介绍了传感器的制造过程,讨论了多孔结构和电晕抛光对改善传感器性能的影响。所提出的柔性传感器具有3312pc / n的等效压电系数D33,其远大于共同压电材料的压电系数。进行实验,以验证柔性传感器的功能以及SS17L心脏声音传感器(BioPac,Goleta,CA,USA)作为参考。测试结果证明了其可穿戴心脏声音检测和心脏病检测潜力的实际应用。本文提出的柔性传感器可以实现批量生产,与现有的心声检测传感器相比,具有灵活性,生产成本低,加工时间短的优点。

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