Yao K, Uchino K, Xu Y, Dong S, Lim L C
Institute of Materials Research and Engineering, 3 Research Link, Singapore 117602.
IEEE Trans Ultrason Ferroelectr Freq Control. 2000;47(4):819-25. doi: 10.1109/58.852063.
Small, hollow, multilayer actuators with a diameter of 3 mm were fabricated by the stacking method from piezoelectric hard lead zirconate titanate (PZT) ceramics. Langevin vibrators were also constructed with the hollow multilayer actuators. The performance capabilities of the actuator and Langevin vibrator samples were examined under high-power conditions. The high-power vibration level at a given sinusoidal drive voltage was significantly enhanced by using a multilayer structure under either a nonresonance or resonance condition. A maximum vibration velocity of 0.17 m/sec was obtained for the 9-layer actuator sample under nonresonance conditions. The vibration velocity was further improved with the Langevin vibrator driven at the resonance frequency. The temperature rise due to heat generation under high-power conditions was the immediate limitation on the maximum accessible vibration velocity for the stacked actuators.
通过堆叠法,用压电硬锆钛酸铅(PZT)陶瓷制造了直径为3毫米的小型中空多层致动器。还使用这些中空多层致动器构建了兰姆波振子。在高功率条件下对致动器和兰姆波振子样品的性能进行了检测。在非共振或共振条件下,采用多层结构可显著提高给定正弦驱动电压下的高功率振动水平。在非共振条件下,9层致动器样品的最大振动速度达到了0.17米/秒。在共振频率下驱动兰姆波振子,振动速度进一步提高。高功率条件下由于发热导致的温度升高是堆叠式致动器最大可达振动速度的直接限制因素。