4.6 Article

Assessment of the Piezoelectric Response of an Epoxy Resin/SbSINanowires Composite Filling FDM Printed Grid

期刊

MATERIALS
卷 13, 期 22, 页码 -

出版社

MDPI
DOI: 10.3390/ma13225281

关键词

epoxy resin; nanocomposite; nanosensors; antimonysulphoiodide; fuse deposition modeling

资金

  1. SILESIAN UNIVERSITY OF TECHNOLOGY [11/030/BK_20/0285, 827/RN2/RR4/2018, 14/990/RGJ20/0133, 14/990/RGJ19/0116, 14/990/RGJ20/0135]
  2. SILESIAN UNIVERSITY OF TECHNOLOGY, FACULTY OF MATERIALS ENGINEERING, DEPARTMENT OF ADVANCED MATERIALS AND TECHNOLOGIES [11/030/BK_20/0285]

向作者/读者索取更多资源

This paper shows a piezoelectric response from an innovative sensor obtained by casting epoxy-SbSI (antimony sulfoiodide) nanowires nanocomposite to a grid structure printed using a fuse deposition modeling (FDM) method. The grid is shown to be a support structure for the nanocomposite. The applied design approach prospectively enables the formation of sensors with a wide spectrum of shapes and a wide applicability. The voltage signal obtained as a result of the piezoelectric effect reached 1.5V and 0.5V under a maximum static stress of 8.5 MPa and under a maximum dynamic stress of 22.3 kPa, respectively. These values are sufficient for potential application in sensor systems. The effect of a systematic increase in the voltage signal with subsequent cycles was also observed, which similarly allows the use of these sensors in monitoring systems for structures exposed to unfavorable cyclical loads. The obtained results also show that the piezoelectric signal improves with increase in strain rate.

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