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首页> 外文期刊>Journal of intelligent material systems and structures >High-velocity Impact Location on Aircraft Panels Using Macro-fiber Composite Piezoelectric Rosettes
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High-velocity Impact Location on Aircraft Panels Using Macro-fiber Composite Piezoelectric Rosettes

机译:宏纤维复合压电玫瑰花结在飞机板上的高速冲击定位

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摘要

In this article, an approach based on an array of macro-fiber composite (MFC) transducers arranged as rosettes is proposed for high-velocity impact location on isotropic and composite aircraft panels. Each rosette, using the directivity behavior of three MFC sensors, provides the direction of an incoming wave generated by the impact source as a principal strain angle. A minimum of two rosettes is sufficient to determine the impact location by intersecting the wave directions. The piezoelectric rosette approach is easier to implement than the well-known time-of-flight-based triangulation of acoustic emissions because it does not require knowledge of the wave speed in the material. Hence, the technique does not have the drawbacks of time-of-flight triangulation associated to anisotropic materials or tapered sections. The experiments reported herein show the applicability of the technique to high-velocity impacts created with a gas-gun firing spherical ice projectiles.
机译:在本文中,提出了一种基于排列为玫瑰花结的宏纤维复合(MFC)传感器阵列的方法,用于在各向同性和复合飞机面板上进行高速撞击定位。每个花环都使用三个MFC传感器的方向性行为,将由冲击源生成的入射波的方向作为主要应变角。至少两个玫瑰花结足以通过与波浪方向相交来确定撞击位置。压电花环方法比众所周知的基于飞行时间的声发射三角测量更容易实现,因为它不需要了解材料中的波速。因此,该技术不具有与各向异性材料或锥形截面相关联的飞行时间三角剖分的缺点。本文报道的实验表明,该技术适用于用气枪发射球形冰弹产生的高速冲击。

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