Tian Miao, Park Huiju, Koo Heekwang, Xu Qinwen, Li Jun
a Protective Clothing Research Center , Donghua University , China.
b Department of Fiber Science and Apparel Design , Cornell University , USA.
Int J Occup Saf Ergon. 2017 Mar;23(1):118-126. doi: 10.1080/10803548.2016.1212483. Epub 2016 Aug 9.
Effects of work boots and load carriage (6.4 kg and 12.8 kg) on gait pattern were investigated. The protective work boots were examined by comparison with running shoes through human performance tests with 15 male participants. The loads were carried symmetrically and asymmetrically on the shoulder and hand. Statistical data analysis showed a prolonged stance phase and decreased double support for work boots. A significantly increased ground reaction force was found in work boot conditions as the weight of loads increases. This study demonstrates that inflexible and heavy work boots restrict foot movement and require greater torque at the ankle to propel the body forward, which may increase physical strain and the risk of musculoskeletal injuries. Development of improved fixation methods for work boots, increased use of flexible protective layers and further study of anthropometry of human foot morphology for improved safety and work efficiency of industry workers are suggested.
研究了工作靴以及负重(6.4千克和12.8千克)对步态模式的影响。通过对15名男性参与者进行人体性能测试,将防护工作靴与跑鞋进行比较研究。负荷分别对称和不对称地置于肩部和手部。统计数据分析表明,穿着工作靴时站立期延长,双支撑期减少。随着负荷重量增加,在穿着工作靴的情况下地面反作用力显著增加。本研究表明,僵硬且沉重的工作靴会限制脚部运动,推动身体前进时需要踝关节产生更大扭矩,这可能会增加身体劳损以及肌肉骨骼损伤的风险。建议开发改进的工作靴固定方法,增加使用柔性保护层,并进一步研究人脚形态的人体测量学,以提高产业工人的安全性和工作效率。