Rama Abd Rabouh Mahsoun, Yasser Estanbouli Rama Abd Rabouh Mahsoun, Yasser Estanbouli
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摘要

为了获得高分辨率的医学图像,提高超声成像技术是非常重要的,本研究旨在实现超声换能器(UT)的物理建模和仿真,显示压电材料的电阻抗,通过选择合适的阻抗良好的压电材料,以提高换能器在高低频的性能。本研究采用锆钛酸铅材料(PZT4),利用描述换能器结构中实际物理行为的数学方程进行建模,并利用Matlab环境制作图形用户界面(GUI)进行演示,显示压电材料的电阻抗。并在On Scale环境下采用有限元法(FEM)进行了仿真,比较了两种方法的仿真结果。结果在一定频率上匹配,从而在身体的深层区域给出清晰的图像。这使我们能够对换能器结构进行修改,并为压电材料增加背衬层和匹配层。
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Improving the performance of ultrasound transducer using simulation and modeling: تحسين أداء محول طاقة الأمواج فوق الصوتية باستخدام المحاكاة والنمذجة
Improving medical imaging using ultrasound is important in order to get a high- resolution medical image, this research aims to achieve a physical modeling and simulation of an ultrasound transducer (UT) showing the electrical impedance of the piezoelectric material, in order to increase the transducer performance at both high and low frequencies by choosing a suitable piezoelectric material with good impedance. we adopted in this research Lead Zirconate Titanate material (PZT4), and performed modeling using mathematical equations that describe the actual physical behavior in the transducer structure and made a graphic user interface (GUI) using Matlab environment that demonstrate it, and display the electrical impedance of the piezoelectric material. As well as using Simulation by Finite Elements Methods (FEM) using On Scale environment and comparing the results in both of them. The results matched at a certain frequency, to give a clear image in the deep areas of the body. This later enables us to make modifications to the transducer structure and add backing layer and matching layer for the piezoelectric material.
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