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Rapid Microwave Polymerization of Porous Nanocomposites with Piezoresistive Sensing Function

机译:带压阻传感功能的多孔纳米复合材料的快速微波聚合

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摘要

In this paper, polydimethylsiloxane (PDMS) and multi-walled carbon nanotube (MWCNT) nanocomposites with piezoresistive sensing function were fabricated using microwave irradiation. The effects of precuring time on the mechanical and electrical properties of nanocomposites were investigated. The increased viscosity and possible nanofiller re-agglomeration during the precuring process caused decreased microwave absorption, resulting in extended curing times, and decreased porosity and electrical conductivity in the cured nanocomposites. The porosity generated during the microwave-curing process was investigated with a scanning electron microscope (SEM) and density measurements. Increased loadings of MWCNTs resulted in shortened curing times and an increased number of small well-dispersed closed-cell pores. The mechanical properties of the synthesized nanocomposites including stress−strain behaviors and Young’s Modulus were examined. Experimental results demonstrated that the synthesized nanocomposites with 2.5 wt. % MWCNTs achieved the highest piezoresistive sensitivity with an average gauge factor of 7.9 at 10% applied strain. The piezoresistive responses of these nanocomposites were characterized under compressive loads at various maximum strains, loading rates, and under viscoelastic stress relaxation conditions. The 2.5 wt. % nanocomposite was successfully used in an application as a skin-attachable compression sensor for human motion detection including squeezing a golf ball.
机译:在本文中,使用微波辐射制造具有压阻传感功能的聚二甲基硅氧烷(PDMS)和多壁碳纳米管(MWCNT)纳米复合材料。研究了研究了对纳米复合材料的机械和电性能的研究。在预固化过程中增加的粘度和可能的纳米填充物重聚导致微波吸收降低,导致延长固化时间,并降低固化纳米复合材料中的孔隙率降低和电导率。用扫描电子显微镜(SEM)和密度测量来研究在微波固化过程中产生的孔隙率。增加MWCNT的载荷导致固化时间缩短,并且小井分散细胞孔的数量增加。研究了合成纳米复合材料的机械性能,包括应力 - 应变行为和杨氏模量。实验结果表明,合成的纳米复合材料与2.5重量。 %MWCNTS达到了最高压阻性灵敏度,平均量大率为7.9,施加菌株为10%。这些纳米复合材料的压阻反应在各种最大菌株,装载速率和粘弹性应力松弛条件下的压缩载荷下表征。 2.5 wt。 %纳米复合物在应用中成功地用于作为用于人体运动检测的可皮肤连接的压缩传感器,包括挤压高尔夫球。

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