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Design and analysis of a piezoelectric material based touch screen with additional pressure and its acceleration measurement functions

机译:具有附加压力的压电材料触摸屏的设计与分析及其加速度测量功能

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摘要

Touch screens are becoming more and more prevalent in everyday environments due to their convenience and humanized operation. In this paper, a piezoelectric material based touch screen is developed and investigated. Piezoelectric ceramics arrayed under the touch panel at the edges or corners are used as tactile sensors to measure the touch positioning point similarly to conventional touch screens. However, additional touch pressure and its acceleration performance can also be obtained to obtain a higher-level human-machine interface. The piezoelectric ceramics can also be added to a traditional touch screen structure, or they can be used independently to construct a novel touch screen with a high light transmittance approach to a transparent glass. The piezoelectric ceramics were processed from PZT piezoelectric ceramic powder into a round or rectangular shape. According to the varied touch position and physical press strength of a finger, or even a gloved hand or fingernail, the piezoelectric tactile sensors will have different output voltage responses. By calculating the ratio of different piezoelectric tactile sensors' responses and summing up all piezoelectric tactile sensors' output voltages, the touch point position, touch pressure and touch force acceleration can be detected. A prototype of such a touch screen is manufactured and its position accuracy, touch pressure and response speed are measured in detail. The experimental results show that the prototype has many advantages such as high light transmittance, low energy cost and high durability.
机译:触摸屏由于其便利性和人性化的操作而在日常环境中变得越来越普遍。在本文中,开发并研究了基于压电材料的触摸屏。与常规触摸屏类似,排列在触摸面板下方边缘或角落的压电陶瓷用作触觉传感器,以测量触摸定位点。但是,也可以获得额外的触摸压力及其加速性能,以获得更高级别的人机界面。压电陶瓷也可以添加到传统的触摸屏结构中,或者可以独立使用它们来构建对透明玻璃具有高透光率方法的新型触摸屏。压电陶瓷由PZT压电陶瓷粉末加工成圆形或矩形。根据手指甚至戴着手套的手或指甲的变化的触摸位置和物理按压力,压电式触觉传感器将具有不同的输出电压响应。通过计算不同的压电式触觉传感器的响应比率并汇总所有压电式触觉传感器的输出电压,可以检测出触摸点位置,触摸压力和触摸力加速度。制造这种触摸屏的原型,并详细测量其位置精度,触摸压力和响应速度。实验结果表明,该样机具有透光率高,能耗低,耐久性强等优点。

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