Evaluation of Material Handling Workers Using Snook’s Table: A Case Study
DOI:
https://doi.org/10.15282/ijim.19.3.2025.13223Keywords:
Snook’s Table, Material Handling, Posture RiskAbstract
Material handling presents numerous occupational hazards for workers, with the efficient transfer of heavy items being essential for operational efficiency. Precise execution of tasks according to industry standards is paramount to maintaining product quality and minimizing defects. However, workers' adoption of awkward postures can adversely affect their health and hinder their ability to meet company targets. Originally focused on determining safe lifting limits, Snook's Table has evolved into a comprehensive tool for assessing ergonomic risks associated with various manual tasks. Its adaptation to changing workplace dynamics underscores its importance in promoting workers’ health and safety. In this study, Snook’s Table was employed to evaluate workers’ posture, distinguishing between healthy and awkward stances. A risk index was provided, where scores exceeding 1.0 indicated high-risk conditions. Eight workers were assessed across pulling, pushing, lifting, and carrying activities. The results revealed that 5 workers exceeded the 1.0 risk index in pushing activities, while none surpassed it in pulling tasks. However, 6 workers scored more than 1.0 in lifting and carrying activities, indicating potential risks associated with these tasks. To mitigate such risks, aided tools like trolleys can improve the Snook’s Table index and prevent awkward postures. Additionally, the 3D Static Strength Prediction Program (3DSSPP) evaluates postural balance to enhance worker safety. Improving postures and utilizing aided tools not only reduces the risk of worker injuries but also enhances work effectiveness. By addressing ergonomic concerns and implementing preventive measures, companies can create safer work environments while optimizing productivity.
References
Bang, K. M. (Ed.). (2022). Modern occupational diseases diagnosis, epidemiology, management and prevention. Bentham Science Publishers.
Caster Concepts expands TWERGO® ergonomic caster line, reducing the risk of workplace injuries. (2023, June 08). Yahoo Finance. Retrieved from https://finance.yahoo.com/news/caster-concepts-expands-twergo-ergonomic-145500229.html
Department of Statistics Malaysia. (2022). Retrieved from https://v1.dosm.gov.my/v1/index.php?r=column/ctheme-ByCat&cat=492&bul_id=MkRoQ2IyZ0JkdElIZ0JidUhpaWxydz09&menu_id=WjJGK0Z5bTk1ZElVT09yUW1tRG41Zz09
Dev, S. (2022, May 17). What is Material Handling? Principles, Benefits & Equipment. Modula. Retrieved from https://modula.us/blog/what-is-material-handling/
Greco, A., Sepe, R., & Caputo, F. (2018). A numerical procedure for evaluating physical parameters of ergonomic assessment for cart pushing/pulling tasks. Procedia Structural Integrity, 12, 304-316.
Jeong, H., Yamada, K., Kido, M., Okada, S., Nomura, T., & Ohno, Y. (2016). Analysis of difference in center-of-pressure positions between experts and novices during asymmetric lifting. IEEE journal of translational engineering in health and medicine, 4, 1-11.
Kandananond, K. (2018). The incorporation of virtual ergonomics to improve the occupational safety condition in a factory. International Journal of Metrology and Quality Engineering, 9, 14.
Kusuma, E. W., Anisa, A. F., Intanni, R. M., Widodo, E., & Santosa, J. G. B. (2023). Manual Material Handling Training for Workers in The Furniture Industry. Journal of Safety Education, 1(2), 29-36.
Massey, T. (2017). A guide to the basics of successful material handling. Retrieved March, 31, 2020.
Middlesworth, M. (2012, October 23). A Step-by-Step Guide to Using the Snook’s Table. ErgoPlus. Retrieved from https://ergo-plus.com/Snook’s-Table/
Mohammadi, H., Motamedzade, M., Faghih, M. A., Bayat, H., Mohraz, M. H., & Musavi, S. (2013). Manual material handling assessment among workers of Iranian casting workshops. International journal of occupational safety and ergonomics, 19(4), 675-681.
Rajendran, M., Sajeev, A., Shanmugavel, R., & Rajpradeesh, T. (2021). Ergonomic evaluation of workers during manual material handling. Materials Today: Proceedings, 46, 7770-7776.
Snook, S. H., & Ciriello, V. M. (1991). The design of manual handling tasks: revised tables of maximum acceptable weights and forces. Ergonomics, 34(9), 1197-1213.
Workplace Safety (n.d.). Workplace Manual and Mechanical Material Handling Safety. Retrieved from https://weeklysafety.com/blog/material-handling/
Yusuf, N. N. N., Mustafa, S. A., & Ahmad, R. (2023). Ergonomics assessment of production’s workstations – A case study in the food manufacturing industry. AIP Proceeding, 2544(1), 1-12.
Downloads
Published
Issue
Section
License
Copyright (c) 2025 The Author(s)

This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License.

