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Thermo-electro-mechanical Performance Of Piezoelectric Stack Actuators For Fuel Injector Applications

机译:燃料喷射器应用压电叠层执行器的热电机械性能

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Piezoelectric actuators are increasingly used in fuel injectors due to their quick response, high efficiency, accuracy, and excellent repeatability. Current understanding of their thermo-electro-mechanical performance under dynamic driving conditions appropriate for fuel injection is, however, limited. In this paper, the thermo-electro-mechanical performance of soft Lead Zirconatc Titanate (PZT) stack actuators is experimentally investigated over a temperature range of -30℃ to 80℃, under driving electric fields of up to 2.0 kV/mm (using an AC drive method and a biased DC offset), different frequencies, and a constant preload of about 5 MPa. Experimental results show that the dynamic stroke of the actuators increases with the magnitude and frequency of the applied electric field, as well as ambient temperature. The dynamic stroke was also found to increase with decreased driving field rise time, which is equivalent to increasing the driving field frequency. At driving frequencies lower than the resonance frequency of the test apparatus (≈500 Hz), the strain-electric field behavior under different temperatures agreed well with previously obtained quasi-static results. The duty cycle was found to have a minimal effect on dynamic stroke but significantly affected the amount of heat generated under high electric field magnitudes and/or frequencies. The temperature increase due to self-heat generation under a continuous AC driving field (100% duty cycle) was very high, and limited the maximum driving field magnitude and/or frequency. Reducing the duty cycle significantly decreased the amount of heat generation.
机译:压电执行器因其响应速度快,效率高,准确性高和可重复性高而越来越多地用于燃油喷射器中。然而,目前对于在适合于燃料喷射的动态驾驶条件下其热电机械性能的理解是有限的。本文研究了软锆钛酸铅(PZT)堆栈执行器在-30℃至80℃温度范围内,驱动电场高达2.0 kV / mm的情况下的热电机械性能。交流驱动方法和偏置的直流偏移),不同的频率以及大约5 MPa的恒定预紧力。实验结果表明,执行器的动态行程随所施加电场的大小和频率以及环境温度而增加。还发现动态冲程随着驱动场上升时间的减少而增加,这等效于增加驱动场频率。在低于测试设备共振频率(≈500Hz)的驱动频率下,不同温度下的应变电场行为与先前获得的准静态结果非常吻合。发现占空比对动态行程的影响最小,但在高电场强度和/或频率下显着影响了产生的热量。在连续的交流驱动场(100%占空比)下由于自发热而引起的温度升高非常高,并且限制了最大驱动场的大小和/或频率。降低占空比显着减少了发热量。

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