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Mechanical properties of piezoelectric PVDF/MWCNT fibers prepared by flat/hollow cylindrical near-field electrospinning process

机译:扁平/空心圆柱近场静电纺丝工艺制备的压电PVDF / MWCNT纤维的机械性能

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The existing study focused more on one-dimensional nanostructures such as nanotubes and nanofibers for various potential applications, but less on evaluation of their mechanical properties. Therefore, this study mainly concentrates on near-field electrospinning (NFES) and hollow cylindrical near-field electrospining (HCNFES) process to fabricate permanent piezoelectricity of polyvinylidene fluoride (PVDF)/multi-walled carbon nanotube (MWCNT) nanofibers. Comparing NFES and HCNFES, it can be seen that HCNFES was fabricated under high electrical field with in-situ strong mechanical stretching for possible alignment of dipoles along the longitudinal direction of PVDF nanofiber. Therefore, PVDF nanofibers fabricated using HCNFES can be of smaller diameters and higher contents of β-phase with excellent piezoelectricity. In addition, the crystallization and mechanical behaviors of PVDF nanofibers were influenced by the PVDF solution concentration and addition of MWCNT. The tensile test shows that the yield strength increases with increasing 0.03% MWCNT and 16% PVDF solution.
机译:现有的研究更多地集中于一维纳米结构,例如用于各种潜在应用的纳米管和纳米纤维,而很少关注其机械性能的评估。因此,本研究主要集中在近场静电纺丝(NFES)和中空圆柱形近场静电纺丝(HCNFES)工艺上,以制造聚偏二氟乙烯(PVDF)/多壁碳纳米管(MWCNT)纳米纤维的永久压电性。比较NFES和HCNFES,可以看出HCNFES是在高电场下制造的,具有就地强机械拉伸能力,可用于偶极子沿PVDF纳米纤维的纵向排列。因此,使用HCNFES制造的PVDF纳米纤维可以具有更小的直径和更高的β相含量,并且具有优异的压电性。此外,PVDF纳米纤维的结晶和力学行为受PVDF溶液浓度和MWCNT添加的影响。拉伸试验表明,屈服强度随0.03%MWCNT和16%PVDF溶液的增加而增加。

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