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Comparative Study of PVDF Sheets and Their Sensitivity to Mechanical Vibrations: The Role of Dimensions Molecular Weight Stretching and Poling

机译:PVDF床单的比较研究及其对机械振动的敏感性:尺寸分子量拉伸和抛光的作用

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摘要

This paper is focused on the comparative study of the vibration sensing capabilities of poly(vinylidene fluoride) (PVDF) sheets. The main parameters such as molecular weight, initial sample thickness, stretching and poling were systematically applied, and their impact on sensing behavior was examined. The mechanical properties of prepared sheets were investigated via tensile testing on the samples with various initial thicknesses. The transformation of the α-phase to the electro-active β-phase was analyzed using FTIR after applying stretching and poling procedures as crucial post-processing techniques. As a complementary method, the XRD was applied, and it confirmed the crystallinity data resulting from the FTIR analysis. The highest degree of phase transformation was found in the PVDF sheet with a moderate molecular weight (Mw of 275 kDa) after being subjected to the highest axial elongation (500%); in this case, the β-phase content reached approximately 90%. Finally, the vibration sensing capability was systematically determined, and all the mentioned processing/molecular parameters were taken into consideration. The whole range of the elongations (from 50 to 500%) applied on the PVDF sheets with an Mw of 180 and 275 kDa and an initial thickness of 0.5 mm appeared to be sufficient for vibration sensing purposes, showing a d33 piezoelectric charge coefficient from 7 pC N−1 to 9.9 pC N−1. In terms of the d33, the PVDF sheets were suitable regardless of their Mw only after applying the elongation of 500%. Among all the investigated samples, those with an initial thickness of 1.0 mm did not seem to be suitable for vibration sensing purposes.
机译:本文的重点是聚(偏二氟乙烯)(PVDF)片材的振动传感能力的对比研究。系统地应用了分子量,初始样品厚度,拉伸和抛光的主要参数,检查了它们对传感行为的影响。通过具有各种初始厚度的样品上的拉伸试验研究制备的片材的机械性能。在将拉伸和极化程序应用于关键的后处理技术之后,使用FTIR分析α-阶段对电活性β相的转化。作为互补方法,XRD被施加,并且它确认了由FTIR分析产生的结晶度数据。在经受最高轴向伸长率(500%)之后,在PVDF片中发现在PVDF片中的相移程度的相变度(MW为275kDa);在这种情况下,β相含量达到约90%。最后,系统地确定了振动传感能力,考虑所有提到的处理/分子参数。在具有180和275kDa的MW的PVDF板上施加在PVDF片上的整个范围(50至500%),初始厚度为0.5mm,似乎足以用于振动传感目的,从7中显示D33压电电荷系数PC N-1至9.9 PC N-1。就D33而言,仅在施加500%后才能合适地是合适的。在所有调查的样品中,初始厚度为1.0mm的那些似乎不适合振动传感目的。

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