Department of Mechanical and Aerospace Engineering, West Virginia University, Morgantown, WV 26506, United States.
Department of Industrial and Management Systems Engineering, West Virginia University, Morgantown, WV 26506, United States; Industrial Engineering Department, College of Engineering, King Saud University, Riyadh, Saudi Arabia.
J Biomech. 2021 Mar 30;118:110326. doi: 10.1016/j.jbiomech.2021.110326. Epub 2021 Feb 9.
Hand injuries are a significant problem in many industries with relatively high incidence rates and injury severity. Many workers are required to wear impact protective gloves to protect their hands from impact-related hazards. This research presents the results of an experimental quantification of metacarpal gloves performance subjected to controlled impacts. Thirteen cadaveric hands were used to conduct a set of controlled impact tests on protected and unprotected hands. The controlled impacts targeted the proximal interphalangeal (PIP) joints, the metacarpophalangeal (MCP) joints, and the middle section of the metacarpal bones. Two types of metacarpal gloves commonly used in mining and oil and gas operations were selected for the tests. These gloves include different material and protection configurations on the dorsal side of the hand. The performance of selected gloves was quantified using the maximum reaction force to the impact and number of bone fractures. A total of 191 impacts produced 108 fractures, from which 71% corresponded to the unprotected hands and 40% to the protected hands. Depending on the impact position and type of glove used, the effect of protection ranged from no change up to a 23% reduction in peak reaction force.
手部损伤在许多行业中是一个严重的问题,其发生率和损伤严重程度相对较高。许多工人需要佩戴冲击防护手套,以保护手部免受与冲击相关的危害。本研究介绍了对手部受到控制冲击时掌骨手套性能进行实验量化的结果。使用 13 只尸体手对受保护和未受保护的手进行了一组控制冲击测试。控制冲击的目标是近节指间(PIP)关节、掌指(MCP)关节和掌骨中段。选择了两种在采矿和石油天然气作业中常用的掌骨手套进行测试。这些手套在手背侧采用了不同的材料和保护配置。使用最大冲击力和骨折数量来量化选定手套的性能。总共进行了 191 次冲击,产生了 108 处骨折,其中 71%发生在未受保护的手上,40%发生在受保护的手上。根据冲击位置和使用的手套类型,保护效果从无变化到峰值反作用力降低 23%不等。