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Mechanical Properties of PDMS/CNTs Nanocomposites

机译:PDMS / CNTs纳米复合材料的力学性能

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This study presents the mechanical and electrical properties (including elastic modulus, yield strength and electrical resistance) of PDMS/CNTs nanocomposites. The elastic modulus of pure PDMS and PDMS/CNTs nanocomposites were determined from tensile tests. In addition, a high resistance meter was used to measure the electrical resistances of the PDMS/CNTs nanocomposites. The test specimens of nanocomposites were manufactured using the thermoforming method. There were two recipes used during the thermoforming process: 100 °C for 1 hour, and 150 °C for 15 minutes. The mixtures of PDMS and CNTs were stirred by ultrasonic instrument to prevent polymerization. A feeler gap was used to define the thickness of the specimens. Therefore, the thickness could be controlled within the range of ~ 100 Dm. Four different kinds of specimens were investigated, including pure PDMS, 1.0 wt%, 2.0 wt% and 4.0 wt% CNTs polymeric composites. As for the 100°C recipe, the elastic modulus of pure PDMS, 1.0 wt%, 2.0 wt%, and 4.0 wt% CNTs were 1.05MPa, 1.17MPa, 1.1OMPa and 1.35MPa, respectively. A for the 150°C recipe, the elastic modulus of pure PDMS, 1.0 wt%, 2.0 wt% and 4.0 wt% CNTs were 1.32MPa, 1.42MPa, 1.43MPa, and 1.54MPa. The differences of electrical resistance of PDMS/CNTs nanocomposites at two different conditions and the microstructures composed of the mixtures are also described in this article.
机译:这项研究提出了PDMS / CNTs纳米复合材料的机械和电气性能(包括弹性模量,屈服强度和电阻)。通过拉伸试验确定了纯PDMS和PDMS / CNTs纳米复合材料的弹性模量。另外,使用高电阻计来测量PDMS / CNTs纳米复合材料的电阻。纳米复合材料的测试样品使用热成型方法制造。在热成型过程中使用了两种配方:100°C持续1小时和150°C持续15分钟。通过超声仪器搅拌PDMS和CNT的混合物以防止聚合。塞尺间隙用于定义样品的厚度。因此,厚度可以控制在〜100 Dm的范围内。研究了四种不同类型的样品,包括纯PDMS,1.0 wt%,2.0 wt%和4.0 wt%的CNTs聚合物复合材料。对于100°C配方,纯PDMS,1.0 wt%,2.0 wt%和4.0 wt%CNT的弹性模量分别为1.05MPa,1.17MPa,1.1OMPa和1.35MPa。对于150℃的配方,纯PDMS,1.0 wt%,2.0 wt%和4.0 wt%CNT的弹性模量分别为1.32MPa,1.42MPa,1.43MPa和1.54MPa。本文还描述了PDMS / CNTs纳米复合材料在两种不同条件下的电阻差异以及由混合物组成的微观结构。

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