A Biomechanical Waist Comfort Model for Manual Material Lifting
Yongbao Zhang,
Jinjing Ke,
Xiang Wu and
Xiaowei Luo
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Yongbao Zhang: School of Engineering and Technology, China University of Geosciences (Beijing), Beijing 100083, China
Jinjing Ke: Department of Architecture and Civil Engineering, City University of Hong Kong, Hong Kong 999077, China
Xiang Wu: School of Engineering and Technology, China University of Geosciences (Beijing), Beijing 100083, China
Xiaowei Luo: Department of Architecture and Civil Engineering, City University of Hong Kong, Hong Kong 999077, China
IJERPH, 2020, vol. 17, issue 16, 1-18
Abstract:
Low back pain (LBP) is a common disorder that affects the working population worldwide. LBP causes more disability than any other conditions all around the world. Most existing studies focus on the occupational physical factors in association with LBP, while few focus on individual factors, especially the lack of quantitative calculation of waist comfort in biomechanics. Based on the physical statistics of Chinese men, this research used human posture analysis (HPA) to establish the waist strength formula and analyzed the waist strength during a manual material handling. It also explored the influence of weight and height of lifting objects on the L5-S1 spinal load. On this basis, a waist comfort model was proposed in combination with the recommended weight limit ( RWL ) recommended by NIOSH, and the parameter selection and waist comfort value were verified by Jack simulation software. The results show that pulling force of the Erector Spinae of the waist is closely related to the weight and lifting height of the object. Parameter verification and Jack software simulation results show that the force of L5-S1 is less than 3400 N, which proves that the waist force under this posture is acceptable. The developed waist comfort model can be applied to evaluate work risk, to adjust working intensity and powered exoskeleton design, aiming to decrease the prevalence of LBP.
Keywords: manual material handling; waist comfort level; biomechanics (search for similar items in EconPapers)
JEL-codes: I I1 I3 Q Q5 (search for similar items in EconPapers)
Date: 2020
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