Ultrosonic Beam Steering Behavior of Linear Phased Arrays in Solid

Yu-xiang Dai, Shou-guo Yan, Bi-xing Zhang
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引用次数: 3

Abstract

This paper studies the beam steering behavior of linear phased arrays in solid and analyzes the influence of the SV waves on the beam steering performance of P waves. The analytical formulas of the beam steering field of P waves in the far field in solid are derived. The influence of array design parameters on the beam steering performance of P waves is discussed in detail by numerical simulation. The results show that the grating lobes of SV waves can be eliminated by selecting the inter-element spacing less than a critical value, and the main lobes of that can be eliminated when P waves are steered at a high steering angle larger than a critical value. The analytical expression of the critical inter-element spacing and steering angle are also obtained. In addition, a larger element size can provide a higher energy of P waves relative to SV waves.
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固体中线性相控阵的超声波束转向特性
研究了固体中线性相控阵的波束转向特性,分析了SV波对P波波束转向特性的影响。导出了纵波在固体远场中光束导向场的解析公式。通过数值模拟,详细讨论了阵列设计参数对纵波波束导向性能的影响。结果表明,选取小于临界值的单元间距可以消除SV波的光栅瓣,当P波转向角大于临界值时,可以消除SV波的主瓣。得到了临界元件间距和临界转向角的解析表达式。此外,相对于SV波,较大的单元尺寸可以提供更高的P波能量。
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