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Work of PZT ceramics sounder for sound source artificial larynx

机译:用于声源人工喉的PZT陶瓷测深仪的工作

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We aim to develop the easy-to-use artificial larynx with high tone quality. We focus on using a PZT ceramics sounder as its sound source, because it is small size, low power consumption, and harmless to humans. But conventional PZT ceramics sounder have the problem that it cannot generate an enough sound in the low frequency range, thus they cannot be used for artificial larynx. Then, we aim to develop the PZT ceramics sounder which can generate enough volume in the low frequency range. If we can lower the resonance frequency of the sounder, it can generate low pitch sound easily. Therefore I created the new diaphragm with low resonance frequency. In addition, we could obtain the high amplitude by changing method of driving. This time, we report on the characteristic comparison of this new PZT ceramics sounder and conventional one. Furthermore, for this new one, we analyzed the best alignment of PZT ceramics and the shape of the diaphragm to obtain low resonance frequency and big amplitude. In fact we analyzed the optimization of the structure. The analysis is done by computer simulation of ANSYS and Laser Doppler Vibrometer. In the future, we will add intonation to the generated sound by input wave form which is developed concurrently, and implant the sounder inside of the body by the method of fixing metal to biomolecule which is done too. And so high tone quality and convenient artificial larynx will be completed.
机译:我们的目标是开发易于使用的高音质人工喉。我们专注于使用PZT陶瓷发声器作为声源,因为它体积小,功耗低且对人体无害。但是,传统的PZT陶瓷发声器具有的问题是它不能在低频范围内产生足够的声音,因此它们不能用于人造喉。然后,我们的目标是开发可以在低频范围内产生足够音量的PZT陶瓷测深仪。如果我们可以降低发声器的共振频率,则它可以轻松产生低音调声音。因此,我创建了具有低谐振频率的新膜片。另外,我们可以通过改变驱动方式来获得高振幅。这次,我们报告了这种新型PZT陶瓷测深仪与常规测深仪的特性比较。此外,对于这一新产品,我们分析了PZT陶瓷的最佳排列和膜片的形状,以获得较低的谐振频率和较大的振幅。实际上,我们分析了结构的优化。该分析是通过ANSYS和激光多普勒振动计的计算机仿真完成的。将来,我们将通过同时开发的输入波形将音调加入到生成的声音中,并通过将金属固定到生物分子上的方法将发声器植入体内。这样就可以完成高音质和方便的人工喉。

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