材料科学
执行机构
锥面
体积流量
弹性体
流量控制(数据)
流量(数学)
复合材料
导电体
机械工程
芯(光纤)
电压
机制(生物学)
电介质
控制系统
液体电介质
捆绑
流体力学
介电弹性体
润滑油
作者
Yafeng Sun,Ye Chen,Shuang Geng,Jinke Zhu,Zhaofu Zhang,Chaoqun Xiang
标识
DOI:10.1177/1045389x261470577
摘要
Aiming at the defects of complex structure and slow response existing in traditional flow control systems, this paper proposes a liquid flow control system based on a conical dielectric elastomer actuator (CDEA) and conducts systematic experimental research. The 3M VHB series material was selected as the core component, which was paired with MG Chemicals 846 carbon conductive grease to serve as the flexible electrode. A pre-stretching mechanism was fabricated via CO 2 laser cutting, and the core material was subjected to 400% × 400% pre-stretching treatment. A test platform was constructed, and orthogonal experiments were performed to analyze the influence of key parameters on actuator performance. After integrating the actuator into the flow control device, experimental results show that the maximum pumping flow rate of 5.67 mL/min is obtained at a frequency of 3 Hz and a voltage of 6 kV, and the flow rate decreases with the increase of liquid viscosity. This study provides theoretical and experimental support for the application of flexible actuation in fluid control, laying a foundation for its innovative application in the medical field.
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