[Study of mechanical effects of the EVA glove on finger base with finite element modeling]

Sheng Wu Yi Xue Gong Cheng Xue Za Zhi. 2013 Aug;30(4):767-71.
[Article in Chinese]

Abstract

The hand strength of astronauts, when they are outside the space capsule, is highly influenced by the residual pressure (the pressure difference between inside pressure and outside one of the suit) of extravehicular activity spacesuit glove and the pressure exerted by braided fabric. The hand strength decreases significantly on extravehicular activity, severely reducing the operation efficiency. To measure mechanical influence caused by spacesuit glove on muscle-tendon and joints, the present paper analyzes the movement anatomy and biomechanical characteristics of gripping, and then proposes a grip model. With phalangeal joint simplified as hinges, seven muscles as a finger grip energy unit, the Hill muscle model was used to compute the effects. We also used ANSYS in this study to establish a 3-D finite element model of an index finger which included both bones and muscles with glove, and then we verified the model. This model was applied to calculate the muscle stress in various situations of bare hands or hands wearing gloves in three different sizes. The results showed that in order to achieve normal grip strength with the influence caused by superfluous press, the finger's muscle stress should be increased to 5.4 times of that in normal situation, with most of the finger grip strength used to overcome the influence of superfluous pressure. When the gap between the finger surface and the glove is smaller, the mechanical influence which superfluous press made will decrease. The results would provide a theoretical basis for the design of the EVA Glove.

Publication types

  • English Abstract
  • Research Support, Non-U.S. Gov't

MeSH terms

  • Astronauts
  • Fingers / physiology*
  • Finite Element Analysis*
  • Gloves, Protective / adverse effects*
  • Hand Strength / physiology*
  • Humans
  • Mechanical Phenomena
  • Pressure
  • Space Suits / adverse effects*