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首页> 外文期刊>The Journal of the Acoustical Society of America >Two-dimensional virtual array for ultrasonic nondestructive evaluation using a time-reversal chaotic cavity
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Two-dimensional virtual array for ultrasonic nondestructive evaluation using a time-reversal chaotic cavity

机译:二维虚拟阵列用于使用时间反转混沌腔进行超声无损评估

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摘要

Despite its introduction more than a decade ago, a two-dimensional ultrasonic array remains a luxury in nondestructive evaluation because of the complexity and cost associated with its fabrication and operation. This paper describes the construction and performance of a two-dimensional virtual array that solves these problems. The virtual array consists of only two transducers (one each for transmit and receive) and an aluminum chaotic cavity, augmented by a 10 10 matrix array of rectangular rods. Each rod, serving as an elastic waveguide, is calibrated to emit a collimated pulsed sound beam centered at 2.5 MHz using the reciprocal time reversal. The resulting virtual array is capable of pulse-echo interrogation of a solid sample in direct contact along 10 10 scan lines. Three-dimensional imaging of an aluminum test piece, the nominal thickness of which is in the order of 1 cm, is successfully carried out using the virtual array.
机译:尽管已经有十多年的历史了,但是二维超声阵列由于其制造和操作的复杂性和成本而在非破坏性评估中仍然是一种奢侈。本文介绍了解决这些问题的二维虚拟阵列的结构和性能。虚拟阵列仅由两个传感器(每个用于发射和接收)和铝制混沌腔组成,并由10 10矩阵的矩形杆阵列增强。校准每个用作弹性波导的杆,以使用双向时间倒转来发射以2.5 MHz为中心的准直脉冲声束。所得的虚拟阵列能够沿10 10条扫描线直接接触以脉冲回波方式询问固体样品。使用虚拟阵列成功地对铝制试件进行了三维成像,其标称厚度约为1厘米。

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