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Modal voltages and micro-signal analysis of conical shells of revolution

机译:圆锥形旋转壳体的模态电压和微信号分析

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摘要

Conical shells and components are widely used as nozzles, injectors, rocket fairings, turbine blades, etc. Dynamic and vibration characteristics of conical shells have been investigated over the years. In this paper, micro-electromechanics and distributed sensing phenomena of a generic double-curvature shell and a conical shell are discussed, and governing sensing signal-displacement equations are, derived. Spatially distributed modal voltages and micro-signal generations of conical shells laminated with distributed piezoelectric sensor layers are investigated based on the Donnel-Mushtari-Valsov theory. Distributed modal voltages and their various signal components of two conical shells reveal that the dominating signal component among the four contributing micro-signal components is the circumferential membrane component. This dominance is even more significant for lower shell modes and/or deep shells. In general, high strain regions result in high signal magnitudes. Accordingly, the spatially distributed signal patterns-the modal voltages-clearly represent the modal dynamic and micro-strain characteristics of conical shells. (C) 2002 Elsevier Science Ltd. All rights reserved. [References: 17]
机译:圆锥形壳体和部件被广泛用作喷嘴,喷射器,火箭整流罩,涡轮叶片等。多年来,已经研究了圆锥形壳体的动态和振动特性。本文讨论了普通双曲率壳和圆锥壳的微机电和分布式传感现象,并推导了主导的传感信号位移方程。基于Donnel-Mushtari-Valsov理论,研究了分布有分布压电传感器层的锥形壳的空间分布模态电压和微信号生成。两个圆锥壳的分布模态电压及其各种信号分量表明,在四个贡献的微信号分量中,主要的信号分量是周向膜分量。对于较低的壳模式和/或深壳,此优势更为重要。通常,高应变区域导致高信号幅度。因此,空间分布的信号模式-模态电压-清楚地代表了锥形壳的模态动态和微应变特性。 (C)2002 Elsevier ScienceLtd。保留所有权利。 [参考:17]

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