首页> 外文期刊>Journal of intelligent material systems and structures >A sub-cc nonlinear piezoelectric energy harvester for powering leadless pacemakers
【24h】

A sub-cc nonlinear piezoelectric energy harvester for powering leadless pacemakers

机译:Sub-cc非线性压电能量采集器,用于为无铅起搏器供电

获取原文
获取原文并翻译 | 示例

摘要

>A miniature nonlinear piezoelectric energy harvester is developed to power state of the art leadless cardiac pacemakers from cardiac motions. The energy harvester is integrated in the leadless pacemaker and is connected to the myocardium. The energy harvester converts myocardial motions to electricity to power leadless pacemakers. The energy is stored in a battery or supercapacitor and is used for pacing. The device is composed of a bimorph piezoelectric beam confined in a gray iron frame. The system is assembled at high temperature and operated at the body temperature. The mismatch in the coefficients of thermal expansion of the beam and the frame causes the beam to buckle in body temperature. This intentional buckling makes the beam unstable and improves the power production and robustness of the device. Having high natural frequency is a major problem in microelectromechanical systems energy harvesters. Considering the small size of the energy harvester,0.5cm3, the natural frequency is expected to be high. In our design, the natural frequency is lowered significantly using a buckled beam and a proof mass. Since the beam is buckled, the design is bistable and nonlinear, which could increase the output power. In this article, the device is analytically modeled, and the natural frequencies and mode shapes of the energy harvester are analytically derived. The terms corresponding to geometric nonlinearities are included in the electromechanical coupled governing equations. The simulations show that the device generates sufficient electricity to power leadless pacemakers.
机译: >微型非线性压电能量采集器的开发旨在通过心脏运动为无铅心脏起搏器提供动力。能量采集器集成在无铅起搏器中,并连接到心肌。能量采集器将心肌运动转换为电能,为无铅起搏器供电。能量存储在电池或超级电容器中,并用于起搏。该设备由封闭在灰铁框架中的双压电晶片压电梁组成。该系统在高温下组装并在体温下运行。梁和框架的热膨胀系数不匹配会导致梁的体温弯曲。这种有意的屈曲使光束不稳定,并提高了功率产生和设备的坚固性。具有高固有频率是微机电系统能量收集器中的主要问题。考虑到能量收集器的体积小, 0 5 c m 3 ,预计自然频率会很高。在我们的设计中,使用弯曲梁和检定质量可以显着降低固有频率。由于光束是弯曲的,因此设计是双稳态且非线性的,这可能会增加输出功率。在本文中,对设备进行了分析建模,并通过分析得出了能量收集器的固有频率和模式形状。对应于几何非线性的项包括在机电耦合的控制方程中。仿真表明,该设备产生的电能足以为无铅起搏器供电。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号