Startseite Stretchability and Properties of Biaxially Oriented Polypropylene Film
Artikel
Lizenziert
Nicht lizenziert Erfordert eine Authentifizierung

Stretchability and Properties of Biaxially Oriented Polypropylene Film

  • T. Kanai , H. Uehara , K. Sakauchi und T. Yamada
Veröffentlicht/Copyright: 10. Mai 2022
Veröffentlichen auch Sie bei De Gruyter Brill

Abstract

The double bubble tubular film (DBTF) process is a more economical way of producing biaxially oriented film, when compared to the tenter biaxially oriented film process. This film manufacturing technique has been widely used to produce biaxially oriented films because of good shrinkability and high physical properties. Recently, shrinkage film for this usage is required to have good stretchability and shrinkage strength. But the biaxial stretchability changes of polypropylenes and the reasons for such have not been reported upon systematically.

In this report, the relationship between stretchability and material design of various polypropylenes (PP) for biaxially oriented film, which are most popular polymers, was investigated. Several different ethylene contents and melt flow indices (MI) of PP were examined. There was a correlation between MI, ethylene content and the stretchability of the DBTF. A random copolymer with MI 2 g/10 min and ethylene content 4.0 wt.% gave good stretchability. The most suitable composition distribution for stretching and the properties of biaxially oriented films were studied by using the temperature rising elution fractionation.


T. Kanai, Research and Development Laboratory, Idemitsu Kosan Co., Ltd, Ichihara, Chiba, Japan


References

1 U.S. Patent 2 979 777 (1961) Goldman, M.Suche in Google Scholar

2 U. S. Patent 3 510 549 (1970) Tsubosita, K., Kano, T.Suche in Google Scholar

3 U. S. Patent 3 260 776 (1966) Lindstrom, C.Suche in Google Scholar

4 U.S. Patent 3 300 555 (1967) Bild, F., Robinson, W.10.1136/bmj.3.5564.555Suche in Google Scholar

5 U. S. Patent 4 112 034 (1978) Nash, J. L., Polish, S. J., Carrico, P. H.Suche in Google Scholar

6 U.S. Patent 4 156 709 (1979) Kondo, K., Wano, T.Suche in Google Scholar

7 U.S. Patent 3 260 776 (1966) Lindstrom, C. A., William, M. A., Baird, G., Bosse, A. LSuche in Google Scholar

8 U.S. Patent 3 510 549 (1970) Tsuboshima, K., Kanho, T.Suche in Google Scholar

9 U.S. Patent 4 112 034 (1978) Nash, J. L., Polich, S. J.Suche in Google Scholar

10 U.S. Patent 4 279 580 (1981) Hayashi, K., Morihara, K., Nakamura, K.Suche in Google Scholar

11 U.S. Patent 4 597 920 (1986) Ralph, G.Suche in Google Scholar

12 U.S. Patent 5 904 964 (1999) Douglas, J.Suche in Google Scholar

13 U.S. Patent 5 298 202 (1994) Schirmer, H.Suche in Google Scholar

14 U.S. Patent 4 801 652 (1989) Mizutani, T., Isozaki, H.Suche in Google Scholar

15 U.S. Patent 3 663 662 (1972) Ostapchenko, J.10.1016/S0005-7894(72)80039-XSuche in Google Scholar

16 U.S. Patent 5 589 561 (1996) Barry, R., Pellereau, B.Suche in Google Scholar

17 U.S. Patent 4 551 380 (1984) Jurian, H.Suche in Google Scholar

18 Japan Patent 2 688 827 (1988) Isozaki, H., Fukushima, H.Suche in Google Scholar

19 U.S. Patent 09/846 218 (2001) Uehara, H., Matsuda, Y., Sakauchi, K.Suche in Google Scholar

20 White, J. L.: Film Processing, Hanser Publishers, Munich (1999)Suche in Google Scholar

21 Takashige, M., Kanai, T.: Int. Polym. Process. 3, p. 287 (1990)10.3139/217.900287Suche in Google Scholar

22 Ree, S., White, J. L.: Int. Polym. Process. 3, p. 272 (2001)10.3139/217.1647Suche in Google Scholar

23 Song, K., White, J. L.: SPE ANTEC Tech. Papers 57, p. 1650 (1999)Suche in Google Scholar

24 Takashige, M., Kanai, T., Yamada, T.: Int. Polym. Process. 4, p. 368 (2003)10.3139/217.1782Suche in Google Scholar

25 Takashige, M., Kanai, T., Yamada, T.: Int. Polym. Process. 2, p. 147 (2004)10.3139/217.1805Suche in Google Scholar

26 Takashige, M., Kanai, T., Yamada, T.: Int. Polym. Process. 1, p. 47 (2004)10.3139/217.1810Suche in Google Scholar

27 Takashige, M., Kanai, T., Yamada, T.: Int. Polym. Process. 1, p. 56 (2004)10.3139/217.1803Suche in Google Scholar

28 Uehara, H., Sakauchi, K., Kanai, T., Yamada, T.: Int. Polym. Process. 2, p. 155 (2004)10.3139/217.1813Suche in Google Scholar

29 Uehara, H., Sakauchi, K., Kanai, T., Yamada, T.: Int. Polym. Process. 2, p. 163 (2004)10.3139/217.1812Suche in Google Scholar

30 Uehara, H., Sakauchi, K., Kanai, T., Yamada, T.: Intern. Polym. Process. 2, p. 172 (2004)10.3139/217.1816Suche in Google Scholar

31 Kanai, T., Campbell, G. A.: Film Processing. Hanser Publishers, Munich (1999)10.3139/9783446401792Suche in Google Scholar

32 Housaki, T.: Bunseki 9 (Japanese), p. 518 (2000)Suche in Google Scholar

Received: 2005-05-06
Accepted: 2006-03-14
Published Online: 2022-05-10

© 2006 Hanser Publishers, Munich

Artikel in diesem Heft

  1. Contents
  2. Rapid Communications
  3. A Novel High Flow Rate Pin for Water-assisted Injection Molding of Plastic Parts with a More Uniform Residual Wall Thickness Distribution
  4. Regular Contributed Articles
  5. Structure Property Relationships in PA 6 and PP Copolymers Blended by Single and Twin Screw Extrusion
  6. Stretchability and Properties of Biaxially Oriented Polypropylene Film
  7. Dynamic Mold Surface Temperature Control Using Induction and Heater Heating Combined with Coolant Cooling
  8. Visualization of Melt-Flow Behavior Inside the Runner in Ultra High Speed Injection Molding
  9. Effects of Cavity Conditions on Transcription Molding of Microscale Prism Patterns Using Ultra-High-Speed Injection Molding
  10. Effect of Melt and Mold Temperature on Fiber Orientation during Flow in Injection Molding of Reinforced Plastics
  11. Invited Paper
  12. Polymer/Layered Silicate Nano-composites
  13. Regular Contributed Articles
  14. Paste Extrusion of Polytetrafluoroethylene: Temperature, Blending and Processing Aid Effects
  15. Influence of Viscosity-interface Modifier Interactions on Performance and Processability of Rice Hull PE Composites
  16. Single and Multi Objective Optimization for Injection Molding Using Numerical Simulation with Surrogate Models and Genetic Algorithms
  17. A Process Classification Number for the Solidification of Crystallizing Materials
  18. Effect of Aerodynamics on Film Blowing Process
  19. Analysis of Necking Deformation Behavior in High-Speed In-line Drawing Process of PET by On-line Diameter and Velocity Measurements
  20. PPS News
  21. PPS News
  22. Seikei-Kakou Abstracts
  23. Seikei-Kakou Abstracts
Heruntergeladen am 30.10.2025 von https://www.degruyterbrill.com/document/doi/10.3139/217.0987/pdf
Button zum nach oben scrollen