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Design and fabrication of a new piezoelectric paper feeder actuator without mechanical parts

机译:没有机械零件的新型压电纸馈线执行器的设计和制造

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摘要

A piezoelectric paper feeder actuator using Micro Virtual Roller (MVR) is proposed, designed, fabricated and tested. This actuator can drive a sheet of paper forward or backward without any mechanical parts, such as the costly and heavy rollers used in traditional paper feeders. In this paper feeder actuator, two vibrating stators which produce traveling waves are used to drive the paper. The vibrations of the stators are similar to those of piezoelectric motors and follow a similar procedure to move the paper. A feasibility study simulated the actuator in COMSOL Multiphysics Software. Traveling wave and elliptical trajectories were obtained and the dimensions of the stator were optimized using ELM so that the paper could move at top speed. Next, the eigenfrequencies of the actuator was determined. Experimental testing was done in order to validate the FEM results that revealed the relationships between speed and parameters such as frequency and voltage. Advantages of this new mechanism are the sharp decrease in power consumption and low maintenance.
机译:采用微虚辊(MVR)的压电送纸器执行器,设计,制造和测试。该执行器可以在没有任何机械部件的情况下向前或向后驱动一张纸,例如传统纸馈送器中使用的昂贵和重型滚子。在本文送料器执行器中,产生行驶波的两个振动定子用于驱动纸张。定子的振动与压电电动机的振动类似,并遵循类似程序以移动纸张。可行性研究模拟COMSOL Multiphysics软件中的执行器。获得了行程波和椭圆形轨迹,使用ELM优化定子的尺寸,使纸张可以以顶速移动。接下来,确定执行器的特征频道。进行实验测试以验证显示速度和参数之间的关系,例如频率和电压之间的关系。这种新机制的优点是功耗和低维护的急剧下降。

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