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Nonlocal Damage Mechanics for Quantification of Health for Piezoelectric Sensor

机译:压电传感器健康量化的非局部损伤力学

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In this paper, a novel method to quantify the incubation of damage on piezoelectric crystal is presented. An intrinsic length scale parameter obtained from nonlocal field theory is used as a novel measure for quantification of damage precursor. Features such as amplitude decay, attenuation, frequency shifts and higher harmonics of guided waves are commonly-used damage features. Quantification of the precursors to damage by considering the mentioned features in a single framework is a difficult proposition. Therefore, a nonlocal field theory is formulated and a nonlocal damage index is proposed. The underlying idea of the paper is that inception of the damage at the micro scale manifests the evolution of damage at the macro scale. In this paper, we proposed a nonlocal field theory, which can efficiently quantify the inception of damage on piezoelectric crystals. The strength of the method is demonstrated by employing the surface acoustic waves (SAWs) and longitudinal bulk waves in Lithium Niobate (LiNbO 3 ) single crystal. A control damage was introduced and its manifestation was expressed using the intrinsic dominant length scale. The SAWs were excited and detected using interdigital transducers (IDT) for healthy and damage state. The acoustic imaging of microscale damage in piezoelectric crystal was conducted using scanning acoustic microscopy (SAM). The intrinsic damage state was then quantified by overlaying changes in time of flight (TOF) and frequency shift on the angular dispersion relationship.
机译:本文提出了一种新的方法来量化损伤对压电晶体的温育。从非局部场理论获得的内在长度尺度参数被用作量化损伤前体的新方法。导波的幅度衰减,衰减,频移和高次谐波等特征是常用的损坏特征。通过在单个框架中考虑上述特征来量化破坏的前体是一个困难的主张。因此,提出了非局部场理论,提出了非局部破坏指标。本文的基本思想是在微观尺度上损害的开始体现了宏观尺度上损害的演变。在本文中,我们提出了一种非局部场理论,该理论可以有效地量化压电晶体损伤的开始时间。通过在铌酸锂(LiNbO 3)单晶中使用表面声波(SAW)和纵向体波来证明该方法的优势。引入了控制损伤,并使用内在的优势长度量表来表达其表现。使用叉指换能器(IDT)对SAW进行激励并检测其健康状态和损坏状态。使用扫描声显微镜(SAM)对压电晶体中的微观损伤进行了声成像。然后,通过将飞行时间(TOF)和频率偏移的变化叠加在角色散关系上来量化固有损伤状态。

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