首页> 外文会议>Intelligent Robots and Systems, 1999. IROS '99. Proceedings. 1999 IEEE/RSJ International Conference on >Micro fluid control system using homogeneous ER fluids (proposition of micro ER valve and basic experiments)
【24h】

Micro fluid control system using homogeneous ER fluids (proposition of micro ER valve and basic experiments)

机译:使用均质ER流体的微流体控制系统(微型ER阀的建议和基础实验)

获取原文

摘要

To realize practical micromachines using fluid power with high power density, a micro fluid control system using homogeneous ER fluid is proposed and developed. Firstly, a new micro ER (electrorheological) valve using homogeneous ER fluid is proposed and fabricated. Its diameter is 9 mm. Static and dynamic characteristics are investigated. With supply pressure of 25 kPa and electric field strength change of 1.0 kV/mm, it is ascertained that the controllable pressure range is 10 kPa and the bandwidth is 0.5 Hz. Secondly, output characteristics of a resonantly-driven piezoelectric micropump 9 mm in diameter and 10 mm long are experimentally investigated by using homogeneous ER fluid. Maximum flow rate of 15 mm/sup 3//s and maximum pumping pressure of 0.2 MPa are obtained. Finally, an open-loop micro position control system is fabricated, which consists of the micropump, the micro ER valve and a bellows microactuator. Through basic experiments, it is confirmed that the output displacement of 23 /spl mu/m and the bandwidth of 0.3 Hz are realized.
机译:为了实现利用具有高功率密度的流体动力的实用微型机器,提出并开发了使用均质ER流体的微型流体控制系统。首先,提出并制造了一种使用均质ER流体的新型微型ER(电流变)阀。直径为9毫米。研究了静态和动态特性。在供应压力为25 kPa且电场强度变化为1.0 kV / mm的情况下,确定可控制的压力范围为10 kPa,带宽为0.5 Hz。其次,通过使用均质ER流体实验研究了直径9 mm,长10 mm的谐振驱动压电微型泵的输出特性。获得的最大流速为15 mm / sup 3 // s,最大泵送压力为0.2 MPa。最终,制造了一个开环微位置控制系统,该系统由微型泵,微型ER阀和波纹管微执行器组成。通过基础实验,可以确认实现了23 / spl mu / m的输出位移和0.3 Hz的带宽。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号