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首页> 外文期刊>Journal of intelligent material systems and structures >Shear actuation mechanism and shear-based actuation capability of an obliquely reinforced piezoelectric fibre composite in active control of annular plates
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Shear actuation mechanism and shear-based actuation capability of an obliquely reinforced piezoelectric fibre composite in active control of annular plates

机译:环形板主动控制中斜增强压电纤维复合材料的剪切驱动机制和基于剪切的驱动能力

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摘要

In this work, the mechanism of shear actuation and the shear mode actuation capability of an obliquely reinforced piezoelectric fibre composite are investigated in active control of annular plates. This piezoelectric fibre composite is capable of providing extensional and shear actuation forces in a transverse plane of its Cartesian material coordinate system, and these actuation forces are utilized for shear-based actuation of an annular plate by embedding the piezoelectric fibre composite patches at the core of the plate. First, the mechanism of shear actuation of the annular sandwich plate is analysed, and it mainly reveals an adverse effect of the coupling between the transverse normal strain and shear stresses on the shear actuation forces, even though a good shear-actuated bending deformation of the annular plate is observed. So, next, the effectiveness of the piezoelectric fibre composite patches in shear mode active control of flexural vibration of the annular sandwich plate is investigated, where a shear-based feedback control arrangement is proposed for effective active control of the plate according to the velocity feedback control law. The analysis reveals an indicative shear actuation capability of this obliquely reinforced piezoelectric fibre composite, and thus it may be a potential material for shear-based active control of vibration of annular plates.
机译:在这项工作中,在环形板的主动控制中,研究了斜增强压电纤维复合材料的剪切驱动机理和剪切模式驱动能力。这种压电纤维复合材料能够在其笛卡尔材料坐标系的横向平面中提供拉伸和剪切驱动力,并且通过将压电纤维复合材料贴片嵌入到其核心,这些驱动力可用于环形板的基于剪切的驱动。碟子。首先,分析了环形夹层板的剪切驱动机理,它主要揭示了横向法向应变与剪切应力之间的耦合对剪切驱动力的不利影响,即使该结构的剪切驱动弯曲变形良好。观察到环形板。因此,接下来,研究压电纤维复合材料贴片在环形夹层板的剪切模式剪切振动主动控制中的有效性,在此基础上,提出了一种基于剪切的反馈控制装置,用于根据速度反馈对板进行有效的主动控制控制法。分析揭示了这种倾斜增强的压电纤维复合材料的指示剪切驱动能力,因此它可能是基于剪切的主动控制环形板振动的潜在材料。

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