首页> 外文会议>Conference on Active Materials: Behavior and Mechanics Mar 3-6, 2003 San Diego, California, USA >High performance tonpilz transducers utilizing d_(32)-cut piezoelectric single crystals
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High performance tonpilz transducers utilizing d_(32)-cut piezoelectric single crystals

机译:利用d_(32)切割压电单晶的高性能tonpilz换能器

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High frequency sonar is becoming ever more important to the Navy through expanded use of unmanned underwater vehicles (UUV). Proposed missions for many UUV's involve shallow water operation where broad bandwidth is required making these applications ideal candidates to use single crystal piezoelectrics. In addition, many UUV sonar systems have commercial uses including oceanographic research, oil and mineral prospecting, salvage, and undersea equipment inspection and maintenance. The properties of single crystal piezoelectrics were exploited for broad bandwidth, high frequency sonar. Crystal sonar investigations based on Tonpilz transducers utilizing the "33" resonance mode have shown limitations on bandwidth due to less than ideal resonator aspect ratio. This is a result of the crystals' low elastic stiffness, which leads to short resonators with large lateral dimensions. To address this issue an alternative design was proposed utilizing the "32" resonance mode with the resonating length oriented along a special crystallographic cut. Crystals with this orientation are known to have high properties; d_(32) values as high as 1600 pC/N have been observed. Since prestress for such a design is applied perpendicular to the poling direction, "32" mode Tonpilz elements exhibit lower loss and higher reliability than "33" mode designs. The feasibility of such "32" mode Tonpilz resonators was presented as determined through property measurements and finite element analysis. A prototype single element Tonpilz will be constructed and tested in future research based on these results. The targeted application for this work is broadband (>100%), high frequency (45 kHz) synthetic aperture arrays for unmanned underwater vehicles.
机译:通过扩大使用无人水下航行器(UUV),高频声纳对海军变得越来越重要。许多UUV的拟议任务涉及需要较宽带宽的浅水操作,这使这些应用成为使用单晶压电的理想选择。此外,许多UUV声纳系统具有商业用途,包括海洋学研究,石油和矿产勘探,打捞以及海底设备检查和维护。单晶压电的特性被用于宽带宽,高频声纳。基于使用“ 33”共振模式的Tonpilz换能器进行的晶体声纳研究表明,由于低于理想的共振器纵横比,带宽受到限制。这是晶体的低弹性刚度的结果,这导致了具有大横向尺寸的短谐振器。为了解决该问题,提出了一种利用“ 32”共振模式的替代设计,其中共振长度沿着特殊的晶体切割取向。已知具有这种取向的晶体具有很高的性能。已观察到d_(32)值高达1600 pC / N。由于这种设计的预应力是垂直于极化方向施加的,因此“ 32”模式的Tonpilz元件比“ 33”模式的设计具有更低的损耗和更高的可靠性。通过性能测量和有限元分析确定了这种“ 32”模式Tonpilz谐振器的可行性。基于这些结果,将在未来的研究中构造并测试原型单元素Tonpilz。这项工作的目标应用是用于无人水下航行器的宽带(> 100%),高频(45 kHz)合成孔径阵列。

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