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Conceptual Design of Spacesuit Hard Hip Joint

机译:Spacesuit硬髋关节的概念设计

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Spacesuit hip joint plays an important role on astronaut activities, such as planetary walking and surveying. This paper proposes a conceptual design of hard hip joint in consideration of the coupling effect of spacesuit hip joint and astronaut thigh. Firstly, lower extremity activities are introduced to illustrate the mobility of hard hip joint, such as walking, kneeing, and abduction. A conceptual design of hard hip joint is explained in detail, including geometric structure, components, design parameters, and mechanism models. Secondly, a 3-linkage coupling mechanism model is built up by synthesizing that conceptual design of hard hip joint. An equiangular dual-perpendicular representation method is brought out to parameterize that mechanism model of hard hip joint. Particularly, four geometric constraints are, respectively, given out to avoid impact between the hip joint and the thigh and to ensure the continuity of thigh motion. Finally, motion equations of hip joint parts are established by using coordinate transformation and vector representation. A case study is conducted to verify the correctness of the proposed representation method and that coupling mechanism model.
机译:Spacesuit Hip关节在宇航员活动中起着重要作用,例如行星行走和测量。本文提出了考虑到Spacesuit Hip关节和宇航员大腿的耦合效果的硬髋关节概念设计。首先,引入了下肢活动来说明硬髋关节的移动性,例如步行,跪和绑架。详细解释了硬髋关节的概念设计,包括几何结构,组件,设计参数和机制模型。其次,通过合成硬髋关节的概念设计来建立3连杆耦合机制模型。提出了一个等态双垂直表示法以参数化硬髋关节机制模型。特别地,给出了四个几何约束,以避免髋关节和大腿之间的冲击并确保大腿运动的连续性。最后,通过使用坐标变换和矢量表示来建立髋关节部件的运动方程。进行案例研究以验证所提出的表示方法和该耦合机制模型的正确性。

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