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A measurement method for piezoelectric material properties under longitudinal compressive stress--a compression test method for thin piezoelectric materials

机译:纵向压缩应力下压电材料性能的测量方法-薄压电材料的压缩测试方法

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摘要

We introduce a new compression test method for piezoelectric materials to investigate changes in piezoelectric properties under the compressive stress condition. Until now, compression tests of piezoelectric materials have been generally conducted using bulky piezoelectric ceramics and pressure block. The conventional method using the pressure block for thin piezoelectric patches, which are used in unimorph or bimorph actuators, is prone to unwanted bending and buckling. In addition, due to the constrained boundaries at both ends, the observed piezoelectric behavior contains boundary effects. In order to avoid these problems, the proposed method employs two guide plates with initial longitudinal tensile stress. By removing the tensile stress after bonding a piezoelectric material between the guide layers, longitudinal compressive stress is induced in the piezoelectric layer. Using the compression test specimens, two important properties, which govern the actuation performance of the piezoelectric material, the piezoelectric strain coefficients and the elastic modulus, are measured to evaluate the effects of applied electric fields and re-poling. The results show that the piezoelectric strain coefficient d_(31) increases and the elastic modulus decreases when high voltage is applied to PZT5A, and the compression in the longitudinal direction decreases the piezoelectric strain coefficient d_(31) but does not affect the elastic modulus. We also found that the re-poling of the piezoelectric material increases the elastic modulus, but the piezoelectric strain coefficient d_(31) is not changed much (slightly increased) by re-poling.
机译:我们介绍了一种新的压电材料压缩测试方法,以研究在压缩应力条件下压电性能的变化。到目前为止,压电材料的压缩测试通常是使用大体积的压电陶瓷和压力块进行的。对于单压电晶片或双压电晶片致动器中使用的用于薄压电片的压力块的传统方法易于产生不希望的弯曲和屈曲。另外,由于两端的边界受约束,观察到的压电行为包含边界效应。为了避免这些问题,所提出的方法使用两个具有初始纵向拉伸应力的导向板。通过在引导层之间粘结压电材料之后去除拉伸应力,在压电层中引起纵向压缩应力。使用压缩试样,测量了控制压电材料的致动性能,压电应变系数和弹性模量的两个重要特性,以评估施加电场和重极化的影响。结果表明,当向PZT5A施加高电压时,压电应变系数d_(31)增加而弹性模量降低,并且在纵向方向上的压缩减小了压电应变系数d_(31),但不影响弹性模量。我们还发现,压电材料的重新极化会增加弹性模量,但压电应力系数d_(31)不会因重新极化而发生太大变化(略有增加)。

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