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X 射线衍射和拉伸应力下的环氧树脂/SbSI 纳米复合材料的压电研究。

X-ray Diffraction and Piezoelectric Studies during Tensile Stress on Epoxy/SbSI Nanocomposite.

机构信息

Centre of Polymer and Carbon Materials, Polish Academy of Sciences, M. Curie-Skłodowskiej 34 Street, 41-819 Zabrze, Poland.

Centre for Science and Education, Institute of Physic, Silesian University of Technology, Krasińskiego 8 Street, 40-019 Katowice, Poland.

出版信息

Sensors (Basel). 2022 May 20;22(10):3886. doi: 10.3390/s22103886.

Abstract

In this paper, the performance of epoxy/SbSI nanocomposite under tensile stress was investigated. X-ray diffraction studies show the main stress mode has shear nature in the case of elastic deformation, while a combination of shear and tensile stress during plastic deformation caused lattice deformation of SbSI and shift of sulfur atoms along the axis of the unit cell. Apart from that, the piezoelectric signals were recorded during tensile tests. Epoxy/SbSI nanocomposite responded to the applied tensile stress by generating a piezoelectric current with a relatively high value. The measured piezoelectric peak-to-peak current is relatively high (I = 1 pA) in comparison to the current flowing through the sample (8.16 pA) under an applied voltage of 100 V. The current level is independent of the deformation speed rate in contradistinction to complex stress states. The signal comes from the whole volume of the sample between electrodes and is generated by shear stress.

摘要

本文研究了拉伸应力下的环氧树脂/SbSI 纳米复合材料的性能。X 射线衍射研究表明,在弹性变形的情况下,主要的应力模式具有剪切性质,而在塑性变形过程中,剪切和拉伸应力的组合导致 SbSI 的晶格变形和硫原子沿单元轴的 轴的位移。除此之外,在拉伸试验过程中记录了压电信号。环氧树脂/SbSI 纳米复合材料通过产生具有相对高值的压电电流对施加的拉伸应力做出响应。与在 100V 施加电压下流过样品的电流(8.16pA)相比,测量的压电峰峰值电流相对较高(I=1pA)。与复杂的应力状态相反,电流水平与变形速度无关。该信号来自电极之间的样品整个体积,并由剪切应力产生。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eee8/9145287/6c6102cb9568/sensors-22-03886-g001.jpg

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