MODELLING PRESSER FOOT PRESSURE IN INDUSTRIAL SEWING MACHINES: BASIC EQUATIONS, ASSUMPTIONS, AND INFLUENCING FACTORS
##semicolon##
Keywords: Presser foot pressure; Sewing machine modelling; Fabric properties; Sewing speed; Thread tension; Industrial textilesAbstrak
Abstract: This study presents a comprehensive model for presser foot pressure
in industrial sewing machines, addressing a critical gap in the optimization of sewing
processes. We develop basic equations that incorporate key factors such as fabric
properties, sewing speed, and machine characteristics. The model's assumptions are
critically examined and validated through extensive experimentation. Our findings
reveal that fabric thickness, sewing speed, and thread tension significantly influence
optimal presser foot pressure. The model demonstrates high accuracy in predicting
optimal pressure settings across various fabric types and sewing conditions, with
potential applications in automated sewing systems and quality control processes.
##submission.citations##
References
1. Zhang, L., Wang, J., & Li, Y. (2018). Analysis of fabric slippage in high-speed
sewing processes. Textile Research Journal, 88(21), 2485-2497.
2. Carvalho, M., Ferreira, F., & Nascimento, J. (2020). The effect of presser foot
pressure on seam quality in stretch fabrics. International Journal of Clothing
Science and Technology, 32(2), 247-259.
3. Lee, S., & Park, C. (2021). A preliminary model for presser foot pressure based on
fabric physical properties. Journal of Engineered Fibers and Fabrics, 16, 1-10.
4. Johnson, R., et al. (2016). U.S. Patent No. 9,394,651 B2. Washington, DC: U.S.
Patent and Trademark Office.
5. Schmidt, H., & Weber, K. (2018). European Patent No. EP 3015619 A1. Munich,
Germany: European Patent Office.
6. Liu, X., et al. (2019). Chinese Patent No. CN 110485632 A. Beijing, China: China
National Intellectual Property Administration.