• CN:11-2187/TH
  • ISSN:0577-6686

›› 2013, Vol. 49 ›› Issue (11): 106-113.

• 论文 • 上一篇    下一篇

界面压力可控式假肢接受腔设计

甘云;李祥;桑元俊;Daniel SU;罗云   

  1. 上海交通大学机械系统与振动国家重点实验室;上海交通大学机械与动力工程学院
  • 发布日期:2013-06-05

Design of a Prosthesis Socket with Pressure-adjustable Interface

GAN Yun;LI Xiang;SANG Yuanjun;DANIEL S U;LUO Yun   

  1. State Key Laboratory of Mechanical System and Vibration, Shanghai Jiao Tong University School of Mechanical Engineering, Shanghai Jiao Tong University
  • Published:2013-06-05

摘要: 功能性假肢接受腔需要同时具备穿戴舒适性与力及运动的传递功能,两者对人机界面提出刚柔特性相反的要求,对接受腔的设计形成了矛盾。针对这一矛盾,提出分时间歇和分区交替承载的界面压力可控式假肢接受腔设计概念,以最大化其功能传递性,并且避免残肢软组织长时间承受过高载荷。设计一种负刚度挤压腔体单元,通过抽真空方式驱动腔体单元收缩改变接受腔内壁形状,实现接受腔对残肢软组织适配界面的刚柔特性协调及快速转换。理论分析负刚度挤压腔体单元的力学特性,该特性使其对软组织松紧挤压转换所需的驱动力小,有利于小型化驱动单元,同时也使接受腔对软组织具有过载保护的功能。以该单元为基础构建假肢接受腔试验模型,并对其界面压力响应特性进行试验评价,初步实现了对接受腔界面压力的控制,并证明了该设计方案可以同时提高接受腔的功能传递性和舒适安全性。

关键词: 负刚度, 接受腔, 生机界面, 压力可变

Abstract: A functional prosthesis socket should be safely wearable and be able to transfer force or movement between weight-bearing stump and prosthesis. This requires the man-machine interface in the socket to be both flexible and stiffer, which is apparently contradictory in its design. To solve this problem, a new design concept to apply the clamping pressure on stump only in needs is proposed, so the stump soft tissue can avoid longtime overload. To realize this concept, a pressure-adjustable chamber with negative stiffness is designed to form pressure units in sockets. The feasibility of the chamber in meeting the rapid switching the interface’s mechanical property from soft to hard is theoretically studied. Negative stiffness of these pressure units makes it easier to adjust the tightness of soft tissue compression, which means the driving force needed can be lower and the actuator can be smaller, and provides the socket with the property of overload protection. A physical model of prosthesis socket with four pressure-adjustable chambers is fabricated for the experimental confirmation of the conceptual design. Promising results are obtained both in its pressure-adjustability and response speed. The new design can help prosthesis socket gain high function transitivity and comfort.

Key words: Human-machine interface, Negative stiffness, Pressure-adjustability, Prosthesis socket

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