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Monitoring applied and residual stress in materials and structures by non-destructive acoustoelastic techniques

机译:通过非破坏性声弹性技术监测材料和结构的应用和残余应力

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We present an innovative non-destructive approach based on the analysis of acoustoelastic effect for monitoring applied and residual stress in materials and structures. The proposed approach can be considered as base for a structures monitoring system. The analysis of the acoustoelastic effect for solid bodies, i.e., the correlation between the acoustic properties and the stress state, may be suitably exploited for experimental purposes. To this aim, relevant modeling and experimental issues should be overcome. Indeed, the usual theoretical framework of the acoustoelastic measurements is the so-called third-order elasticity, based on the use of the acoustoelastic coefficients, and requiring relatively simple experimental measurements.. Here, by adopting an innovative ultrasonic setup, we investigate the capability of a theoretical model developed within the linearized elasticity, and used for describing the propagation of small amplitude waves in prestressed elastic materials. The results of the ultrasonic tests show that this approach in capable of accurate in situ stress measurements. The proposed experimental setup could be further investigated for monitoring applications of stress states in structures during their service life.
机译:我们提出了一种基于对物理弹性效应分析的创新的非破坏性方法,用于监测材料和结构中的应用和残余应力。所提出的方法可以被视为结构监测系统的基础。对于实验目的,可以适当地利用固体对固体的声弹性效果的分析,即声学性质与应力状态之间的相关性。为此目的,应克服相关的建模和实验问题。实际上,声学测量的通常理论框架是所谓的三阶弹性,基于使用声弹性系数,并且需要相对简单的实验测量。这里,通过采用创新的超声设置,我们研究了能力在线性化弹性内显影的理论模型,用于描述预应力弹性材料中小幅度波的传播。超声波检测结果表明,这种方法能够精确地原位应力测量。可以进一步调查所提出的实验设置,以监测在其使用寿命期间结构中应力状态的应用。

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