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INVESTIGATION OF THERMOFORMING TOOL DESIGN AND POCKET QUALITY

Year 2015, Volume: 1 Issue: 7 - SPECIAL ISSUE 2 Energy Systems and Developments 2015 ICESD 2015 INDIA, 670 - 676, 01.07.2015
https://doi.org/10.18186/jte.29917

Abstract

Thermoforming is widely used in manufacturing industries to produce a range of polymer products. The Reflex tape thermoforming system is designed to form flat tape film into pockets. These formed pockets, also called carrier tape, are used in numerous applications to package a large variety of electronic or small mechanical parts. Thermoformed pocket walls are generally not uniform in thickness and often break during the forming process. Uniform wall thickness distribution, especially for deep pockets, plays significant role on pocket quality improvement and scrap reduction. This paper investigates the influence of the tool design, tool material, and some thermoforming process parameters on wall thickness distribution in formed pockets using polymer flat films. Conventional tool and a hybrid tool with 3d printed inserts were used in the experiments. The process parameters, plastic film and tool set temperatures were controlled by the Reflex machine and also measured using infrared thermometer and thermocouple. Film temperature ranges from 150 to 200 °C and a range of tool set temperatures (40 to 85°C) were used in the thermoforming. It has been found that the temperature difference between the plastic film and the forming tool was important for uniform wall thickness distribution. The results from this experimental study concluded that the most influential factors for good pocket quality are the tool design, tool material, and heat transfer dynamics in the plastic film - tool set system. Another aim of the study was to investigate the viability of the 3D printing process to manufacture rapidly tool inserts compared to conventional CNC machining.

References

  • Illig Adolf, (2001). Thermoforming A Practical Guide,
  • Hanser Publishers, Munich. Throne, J. L., (2008). Understanding Thermoforming, 2nd
  • Edition, Hanser Publishers, Munich. Throne, J.L. (1991). Guidelines for thermoforming part wall thickness. Polymer-Plastics Technology and Engineering, vol.30, no. 7, p.685-700, DOI: 10.1080/03602559108020144.
  • Aroujalian, A., Ngadi, M.O., and Emond, J-P. (1997): Wall
  • Thickness Distribution in Plug-Assist Vacuum Formed Strawberry Containers. Polymer Engineering and Science, Vol.37, No.1, 178-182
  • Ayhan Z., Zhang, Q.H. (2000); Wall Thickness Distribution in Thermoformed Food Containers Produced by a Benco
  • Aseptic Packaging Machine. Polymer Engineering and Science, Vol.40, No.1, 1-10
  • Erdogan, E.S. and Eksi, O. (2014); Prediction of Wall
  • Thickness Distribution in Simple Thermoforming Moulds. Journal of Mechanical Engineering 60(2014)3, 195-202
  • Boser, L.M. (2003): Thermoforming Manual and Trouble- Shooting Guide
  • Adaptsys Ltd.Re-flex On-Demand Tape Carrier Tape Forming System Operation & Maintenance Manual Version 3. Azdast, T., Doniavi, A., Ahmadi, S.R., Amiri, E. (2013);
  • Numerical and experimental analysis of wall thickness variation of a hemispherical PMMA sheet in thermoforming process. Int. J. Adv. Manuf. Technol. 64-113-122. Gruenwald, G. (1987): Thermoforming: a plastics processing guide. Technomic, Lancaster
  • Throne, J.L., Mooney, P.J. (2005). Thermoforming: growth and evolution I. Thermoforming Quarterly, vol. 24, no. 1, p. 18
  • Adaptsys Ltd., Carrier Tapes, Device Programmers, Tape & Reel Systems; http://www.adaptsys.com/, (Accessed in 2015).
  • EIA-481-D, Electronic Components Association Standards. 8 mm through 200 mm embossed carrier taping and 8 mm & 12 mm punched carrier taping of surface mount components for automatic handling, USA, July 2008
  • Throne, J.L. (1991). Guidelines for thermoforming part wall thickness. Polymer-Plastics Technology and Engineering. Vol. 30, no. 7, p.685-700, DOI: 10.1080/03602559108020144
  • R. McCool, P.J. Martin and E. Harkin-Jones, (2006);
  • ‘Process modelling for control of product wall thickness in thermoforming’, Plastics, Rubber and Composites, 35, 340-347
  • Song , Y. Zhang, K. F., Wang, Z. R., and Diao, F.X. (2000), Coupled thermoforming; Polymer Engineering and Science, Vol. 40, No.8
  • Marotta, E.E., and Fletcher, L, (1996), Thermal contact conductance of selected polymeric materials, Journal of
  • Thermophysics and Heat Transfer, 10, 334-342. for plastic materials/perfactory-materials/htm140/, Temperature Molding Material printers/design-series/dimension-1200es, ABS Mould insert http://www.stratasys.com/3d

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Year 2015, Volume: 1 Issue: 7 - SPECIAL ISSUE 2 Energy Systems and Developments 2015 ICESD 2015 INDIA, 670 - 676, 01.07.2015
https://doi.org/10.18186/jte.29917

Abstract

-

References

  • Illig Adolf, (2001). Thermoforming A Practical Guide,
  • Hanser Publishers, Munich. Throne, J. L., (2008). Understanding Thermoforming, 2nd
  • Edition, Hanser Publishers, Munich. Throne, J.L. (1991). Guidelines for thermoforming part wall thickness. Polymer-Plastics Technology and Engineering, vol.30, no. 7, p.685-700, DOI: 10.1080/03602559108020144.
  • Aroujalian, A., Ngadi, M.O., and Emond, J-P. (1997): Wall
  • Thickness Distribution in Plug-Assist Vacuum Formed Strawberry Containers. Polymer Engineering and Science, Vol.37, No.1, 178-182
  • Ayhan Z., Zhang, Q.H. (2000); Wall Thickness Distribution in Thermoformed Food Containers Produced by a Benco
  • Aseptic Packaging Machine. Polymer Engineering and Science, Vol.40, No.1, 1-10
  • Erdogan, E.S. and Eksi, O. (2014); Prediction of Wall
  • Thickness Distribution in Simple Thermoforming Moulds. Journal of Mechanical Engineering 60(2014)3, 195-202
  • Boser, L.M. (2003): Thermoforming Manual and Trouble- Shooting Guide
  • Adaptsys Ltd.Re-flex On-Demand Tape Carrier Tape Forming System Operation & Maintenance Manual Version 3. Azdast, T., Doniavi, A., Ahmadi, S.R., Amiri, E. (2013);
  • Numerical and experimental analysis of wall thickness variation of a hemispherical PMMA sheet in thermoforming process. Int. J. Adv. Manuf. Technol. 64-113-122. Gruenwald, G. (1987): Thermoforming: a plastics processing guide. Technomic, Lancaster
  • Throne, J.L., Mooney, P.J. (2005). Thermoforming: growth and evolution I. Thermoforming Quarterly, vol. 24, no. 1, p. 18
  • Adaptsys Ltd., Carrier Tapes, Device Programmers, Tape & Reel Systems; http://www.adaptsys.com/, (Accessed in 2015).
  • EIA-481-D, Electronic Components Association Standards. 8 mm through 200 mm embossed carrier taping and 8 mm & 12 mm punched carrier taping of surface mount components for automatic handling, USA, July 2008
  • Throne, J.L. (1991). Guidelines for thermoforming part wall thickness. Polymer-Plastics Technology and Engineering. Vol. 30, no. 7, p.685-700, DOI: 10.1080/03602559108020144
  • R. McCool, P.J. Martin and E. Harkin-Jones, (2006);
  • ‘Process modelling for control of product wall thickness in thermoforming’, Plastics, Rubber and Composites, 35, 340-347
  • Song , Y. Zhang, K. F., Wang, Z. R., and Diao, F.X. (2000), Coupled thermoforming; Polymer Engineering and Science, Vol. 40, No.8
  • Marotta, E.E., and Fletcher, L, (1996), Thermal contact conductance of selected polymeric materials, Journal of
  • Thermophysics and Heat Transfer, 10, 334-342. for plastic materials/perfactory-materials/htm140/, Temperature Molding Material printers/design-series/dimension-1200es, ABS Mould insert http://www.stratasys.com/3d
There are 21 citations in total.

Details

Primary Language English
Journal Section Articles
Authors

Moustafa Moustafa This is me

Publication Date July 1, 2015
Submission Date October 24, 2015
Published in Issue Year 2015 Volume: 1 Issue: 7 - SPECIAL ISSUE 2 Energy Systems and Developments 2015 ICESD 2015 INDIA

Cite

APA Moustafa, M. (2015). INVESTIGATION OF THERMOFORMING TOOL DESIGN AND POCKET QUALITY. Journal of Thermal Engineering, 1(7), 670-676. https://doi.org/10.18186/jte.29917
AMA Moustafa M. INVESTIGATION OF THERMOFORMING TOOL DESIGN AND POCKET QUALITY. Journal of Thermal Engineering. July 2015;1(7):670-676. doi:10.18186/jte.29917
Chicago Moustafa, Moustafa. “INVESTIGATION OF THERMOFORMING TOOL DESIGN AND POCKET QUALITY”. Journal of Thermal Engineering 1, no. 7 (July 2015): 670-76. https://doi.org/10.18186/jte.29917.
EndNote Moustafa M (July 1, 2015) INVESTIGATION OF THERMOFORMING TOOL DESIGN AND POCKET QUALITY. Journal of Thermal Engineering 1 7 670–676.
IEEE M. Moustafa, “INVESTIGATION OF THERMOFORMING TOOL DESIGN AND POCKET QUALITY”, Journal of Thermal Engineering, vol. 1, no. 7, pp. 670–676, 2015, doi: 10.18186/jte.29917.
ISNAD Moustafa, Moustafa. “INVESTIGATION OF THERMOFORMING TOOL DESIGN AND POCKET QUALITY”. Journal of Thermal Engineering 1/7 (July 2015), 670-676. https://doi.org/10.18186/jte.29917.
JAMA Moustafa M. INVESTIGATION OF THERMOFORMING TOOL DESIGN AND POCKET QUALITY. Journal of Thermal Engineering. 2015;1:670–676.
MLA Moustafa, Moustafa. “INVESTIGATION OF THERMOFORMING TOOL DESIGN AND POCKET QUALITY”. Journal of Thermal Engineering, vol. 1, no. 7, 2015, pp. 670-6, doi:10.18186/jte.29917.
Vancouver Moustafa M. INVESTIGATION OF THERMOFORMING TOOL DESIGN AND POCKET QUALITY. Journal of Thermal Engineering. 2015;1(7):670-6.

IMPORTANT NOTE: JOURNAL SUBMISSION LINK http://eds.yildiz.edu.tr/journal-of-thermal-engineering