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Passively Balanced Load-Adaptive Upper-Limb Exoskeleton

机译:被动平衡负载自适应上肢外骨骼

摘要

A passively balanced load-adaptive upper limb exoskeleton. An upper arm (A), an elbow (B), a forearm (C), and a hand (D) are arranged sequentially from left to right. An upper arm upper rod (A1) and an upper arm lower rod (A2) each are hinge-connected to an upper arm elbow housing via a bearing. A forearm upper rod (C1) and a forearm lower rod (C2) each are hinge-connected to a forearm elbow housing via a bearing. An upper arm support rod (E) is disposed between an upper arm driving mechanism (A4) and an upper arm elbow assembly (B1). One end of the upper arm support rod is fixedly connected to two upper arm support rod slide blocks (9) in the upper arm driving mechanism, and the other end thereof is hinge-connected to protruding shafts on two sides of an upper arm lead screw nut connection member via bearings. A forearm-upper arm support rod is disposed between a forearm driving mechanism (C4) and a forearm elbow assembly (B2). One end of the forearm-upper arm support rod (K) is fixedly connected to two upper arm support rod slide blocks in the forearm driving mechanism, and the other end thereof is hinge-connected to protruding shafts on two sides of a forearm lead screw nut connection member via bearings. The hand is hinge-connected to a wrist. The upper limb exoskeleton of the invention is used to facilitate handling of heavy goods or carrying of certain items.
机译:被动平衡负载的上肢外骨骼。上臂(A),肘部(B),前臂(C)和手(D)从左到右依次排列。上臂上杆(A 1 )和上臂下杆(A 2 )分别通过轴承铰链连接到上臂肘部壳体。前臂上杆(C 1 )和前臂下杆(C 2 )均通过轴承铰链连接到前臂肘部壳体。上臂支撑杆(E)布置在上臂驱动机构(A 4 )和上臂肘组件(B 1 )之间。上臂支撑杆的一端与上臂驱动机构中的两个上臂支撑杆滑块( 9 )固定连接,另一端通过铰链连接至两个上的突出轴上臂的丝杠螺母连接部件的两侧通过轴承。前臂上臂支撑杆设置在前臂驱动机构(C 4 )和前臂肘部组件(B 2 )之间。前臂上臂支撑杆(K)的一端固定连接到前臂驱动机构中的两个上臂支撑杆滑块,另一端铰接连接到前臂导螺杆两侧的突出轴上。螺母连接件通过轴承。手通过铰链连接到手腕。本发明的上肢外骨骼用于促进重物的搬运或某些物品的携带。

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