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首页> 外文期刊>Journal of intelligent material systems and structures >Metal-wire-based twin one-dimensional orthogonal array configuration of PZT patches for damage assessment of two-dimensional structures
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Metal-wire-based twin one-dimensional orthogonal array configuration of PZT patches for damage assessment of two-dimensional structures

机译:用于二维结构损伤评估的PZT贴片基于金属线的孪生一维正交阵列结构

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摘要

This article presents a new field-deployable algorithm harnessing the metal-wire-based variant of the electro-mechanical impedance technique, warranting drastically lesser number of piezo sensors, for damage detection and localization on large two-dimensional structures such as plates. The metal-wire-based approach is a new variant of the electro-mechanical impedance technique. Although less sensitive than the conventional electro-mechanical impedance technique, it is a panacea in situations where direct bonding of lead zirconate titanate (PZT) patches on the host structure is not possible, such as inaccessible structural locations, parts under continuous impact from external loads, brittle materials (triggering signatures without any peaks) or high-temperature locations. This article first reports detailed experimental investigations into the practical aspects of the metal-wire-based electro-mechanical impedance technique. These cover the effect of various associated parameters, such as the wire cross-section, shape, discontinuity and other related issues. Repeatability of signature is also investigated along with the effect of possible breakage in the wire and inadvertent bending. The technique is further adapted by replacing the wire by a thin foil, which is found to improve the damage sensitivity substantially. The proposed algorithm for damage localization on two-dimensional structures uses the PZT patches in the metal-wire-based orthogonal twin-array configuration. The metal-wire-based electro-mechanical impedance technique is first simulated through finite element method, coupled with the basic impedance model, to test the algorithm on the numerical model of a mild steel plate, 1200mmx970mmx8mm in size. The algorithm is then validated through full-scale test on the actual plate, covering damage at various locations. The developments of this article shall pave way for practical application of the metal-wire-based electro-mechanical impedance technique on large two-dimensional structures with minimum number of sensors, especially in situations where the direct electro-mechanical impedance technique is not feasible to be used.
机译:本文提出了一种新的可现场部署的算法,该算法利用了基于金属线的机电阻抗技术的变体,可确保大大减少压电传感器的数量,以用于大型二维结构(如板)的损伤检测和定位。基于金属线的方法是机电阻抗技术的新变体。尽管它不如传统的机电阻抗技术灵敏,但在无法将锆钛酸铅(PZT)斑块直接粘合在主体结构上的情况下,它是万能药,例如难以接近的结构位置,受到外部载荷持续冲击的零件,脆性材料(没有任何峰值的触发信号)或高温位置。本文首先报告了有关基于金属线的机电阻抗技术的实际方面的详细实验研究。这些内容涵盖了各种相关参数的影响,例如导线横截面,形状,不连续性和其他相关问题。还研究了签名的可重复性,以及金属丝可能断裂和意外弯曲的影响。该技术还通过用薄箔代替金属丝来进行调整,这被发现可以显着提高损伤敏感性。提出的二维结构损伤定位算法使用基于金属线的正交双阵列配置中的PZT贴片。首先通过有限元方法,结合基本阻抗模型,对基于金属线的机电阻抗技术进行了仿真,以对尺寸为1200mmx970mmx8mm的低碳钢板的数值模型进行测试。然后,通过对实际印版进行全面测试来验证该算法,从而覆盖各个位置的损坏。本文的进展将为基于金属线的机电阻抗技术在传感器数量最少的大型二维结构上的实际应用铺平道路,特别是在直接机电阻抗技术不可行的情况下使用。

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