Study of the Mechanics of the Spacesuit Gloves

E. O. Bykova, G. R. Kamaletdinova, A. Sorokin
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Abstract

Human safety and ergonomics are the key aspects for engineers working on the design of flight suits. The most important is the prevention of skin damage, the protection of the entire human body, especially from an aggressive environment, and the provision of comfort comparable to everyday clothes. The study is conducted by the Moscow Aviation Institute (National Research University) and is aimed to identify the main problems of modern design of flight suits, which can then be compared and applied to spacesuits. Different spacesuits have been analyzed to prove an importance of high flexibility of the spacesuit’s elements. Pre- and postflight tests stressed high risk of human body injuries in more flexible places comparing to solid ones. At the same time, the bending elements of the suit play crucial role in the operational performance. Based on these overviews a specific glove for spacesuits has been selected and analyzed in details, as an example of the most flexible and important part of the flight kit. This study is aimed to find the most effective way to allow flexibility of the elements of the glove and, as a result, to improve safety and ergonomic markers of the whole spacesuit. For this reason, a mathematical model of human performance (in different operations as bending, holding etc.) has been created and a comparative analysis of joints has been made based on quantitative data on the number of elements, including adhesion, tightening, etc. The experiments have been carried out using tests with a probability level of 0.05. As a result, this article discusses methodological recommendations and safety requirements as well as ways to improve modern gloves. It can potentially affect the direction of its further development identifying a general approach to the flight suit design. This paper also gives an overview of potential spin-off of selected technology.
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太空服手套的力学研究
对于从事飞行服设计的工程师来说,人体安全和人体工程学是关键的方面。最重要的是防止皮肤损伤,保护整个人体,特别是免受恶劣环境的侵害,并提供与日常衣服相当的舒适度。这项研究是由莫斯科航空研究所(国立研究大学)进行的,旨在确定现代飞行服设计的主要问题,然后可以比较并应用于航天服。对不同的宇航服进行了分析,证明了宇航服元件的高灵活性的重要性。飞行前和飞行后的测试强调,与固体相比,在更灵活的地方,人体受伤的风险更高。同时,宇航服的弯曲元件对其使用性能起着至关重要的作用。在这些概述的基础上,我们选择了一种特殊的宇航服手套,并对其进行了详细的分析,作为飞行装备中最灵活、最重要的部分。这项研究的目的是找到最有效的方法,使手套的元素具有灵活性,从而提高整个航天服的安全性和人体工程学标志。因此,建立了人体行为的数学模型(在不同的操作中,如弯曲、握住等),并根据粘合、拧紧等要素数量的定量数据对关节进行了比较分析。本实验采用概率水平为0.05的检验进行。因此,本文讨论了方法建议和安全要求以及改进现代手套的方法。它可以潜在地影响其进一步发展的方向,确定飞行服设计的通用方法。本文还概述了所选技术的潜在衍生产品。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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