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Effects of multi-walled carbon nanotube structures on the electrical and mechanical properties of silicone rubber filled with multi-walled carbon nanotubes

机译:多壁碳纳米管结构对填充多壁碳纳米管的硅橡胶的电和力学性能的影响

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The effects of structures of multi-walled carbon nanotubes (MWCNTs) on the electrical and mechanical properties of MWCNT-filled silicone rubber were studied. The four types of MWCNTs have similar surface chemical properties but different structural parameters, such as the length, aspect ratio (AR) and specific surface area (SSA). The results indicated that with decreasing SSA of MWCNTs, the tensile strength and electrical conductivity of silicone rubber/MWCNTs decrease, whereas the rebound resilience increases. A larger SSA promoted easier formation of a favorable conductive path in silicone rubber/MWCNTs. The viscoelasticity of silicone rubber/MWCNTs was analyzed using a cure characteristic and rubber process analyzer. The SSA is found to be a key factor that affects the viscoelasticity of silicone rubber/MWCNTs. Silicone rubber/MWCNTs that contain MWCNTs with a larger SSA showed stronger filler-rubber interaction and higher tensile strength. Meanwhile, a larger SSA promoted a stronger effect of viscosity of MWCNTs and decreased the rebound resilience of silicone rubber/MWCNTs.
机译:研究了多壁碳纳米管(MWCNTs)的结构对填充MWCNT的硅橡胶的电气和机械性能的影响。四种类型的MWCNT具有相似的表面化学性质,但结构参数不同,例如长度,长宽比(AR)和比表面积(SSA)。结果表明,随着MWCNTs SSA的降低,硅橡胶/ MWCNTs的拉伸强度和电导率降低,而回弹性提高。较大的SSA促进了在硅橡胶/ MWCNT中更容易形成有利的导电路径。使用硫化特性和橡胶过程分析仪分析了硅橡胶/ MWCNT的粘弹性。发现SSA是影响硅橡胶/ MWCNT的粘弹性的关键因素。包含具有较大SSA的MWCNT的硅橡胶/ MWCNT显示出更强的填料-橡胶相互作用和更高的拉伸强度。同时,较大的SSA促进了MWCNT的粘度的更强作用并且降低了硅橡胶/ MWCNT的回弹性。

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