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Influence of the β-phase content and degree of crystallinity on the piezo-and ferroelectric properties of poly(vinylidene fluoride)

机译:β相含量和结晶度对聚偏二氟乙烯的压电和铁电性能的影响

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摘要

The ferroelectric switching behaviour and piezoelectric response of poly(vinylidene fluoride) (PVDF) prepared by drawing at stretching ratios from 1 to 5 and temperatures from 80 to 140 °C has been studied. Stretching ratio and temperature deeply influence the α (non-ferroelectric) to β (ferroelectric) phase transformation. The variations in the phase content are accompanied by changes in the degree of crystallinity and the microstructure, all of them influencing the macroscopic piezoelectric and ferroelectric response of the material. This work shows how the piezo-and ferroelectric behaviour of PVDF depends on the aforementioned parameters and, in particular, on the crystalline β-phase content. Coercive electric field, remnant polarization and saturation polarization increase with increasing ferroelectric β-phase content in the sample. In a similar way, samples with higher β-phase content show higher d_(33) piezoelectric coefficients.
机译:研究了在拉伸比为1到5且温度为80到140°C的条件下制备的聚偏二氟乙烯(PVDF)的铁电开关行为和压电响应。拉伸比和温度对α(非铁电)至β(铁电)的相变产生深远影响。相含量的变化伴随着结晶度和微观结构的变化,所有这些都会影响材料的宏观压电和铁电响应。这项工作表明PVDF的压电和铁电行为如何取决于上述参数,尤其是取决于结晶β相含量。矫顽电场,残余极化和饱和极化随着样品中铁电β相含量的增加而增加。以类似的方式,具有较高β相含量的样品显示较高的d_(33)压电系数。

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