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1机电液混合驱动直线执行器构型设计与性能测试显示文摘针对阀控液压缸节流损失大,电机械执行器带载能力弱的问题,通过液压缸活塞与电机械执行器螺母刚性连接的方式,将两类执行器集成为新型的机电液混合驱动直线执行器,主要由电机械驱动机构和液压驱动机构组成。电机械驱动机构用于执行器运动控制,液压驱动机构具有功率放大功能,用于提高执行器带载能力。研究中,活塞杆设计为中空结构用于长行程丝杠的安装,活塞上增设有通油孔用于油液的快速流通。通过密封设计,将活塞两侧设计为可充高压油液的容腔,采用ANSYS Workbench有限元软件对新型执行器零部件进行强度校核。最后,制造执行器试验样机并构建性能测试平台,测试结果表明,设计的机电液混合驱动直线执行器密封效果良好,运动过程中启制动平稳,具有良好的速度与位置控制特性;执行器液压驱动机构增力效果显著,且节流损失较小。所提机电液混合驱动直线执行器融合了液压驱动和电机械驱动的优点,为实现高能效高功率密度直线驱动提供了一种新的思路。乔舒斐 郝云晓 权龙 葛磊 夏连鹏 2022机械工程学报2022,58,5:5
2One Novel Hydraulic Actuating System for the Lower-Body Exoskeleton显示文摘The hydraulic exoskeleton is one research hotspot in the field of robotics,which can take heavy load due to the high power density of the hydraulic system.However,the traditional hydraulic system is normally centralized,inefficient,and bulky during application,which limits its development in the exoskeleton.For improving the robot's performance,its hydraulic actuating system should be optimized further.In this paper a novel hydraulic actuating system(HAS)based on electric-hydrostatic actuator is proposed,which is applied to hip and knee joints.Each HAS integrates an electric servo motor,a high-speed micro pump,a specific tank,and other components into a module.The specific parameters are obtained through relevant simulation according to human motion data and load requirements.The dynamic models of the HAS are built,and validated by the system identification.Experiments of trajectory tracking and human-exoskeleton interaction are carried out,which demonstrate the proposed HAS has the ability to be applied to the exoskeleton.Compared with the previous prototype,the total weight of the HAS in the robot is reduced by about 40%,and the power density is increased by almost 1.6 times.Maowen Sun Xiaoping Ouyang Jouni Mattila Huayong Yang Gang Hou 2021Chinese Journal of Mechanical Engineering2021,34,1:4
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