The Changes in Physical Properties and Fine Structure during the Aqueous Ammonia Treatment of PET Tire Cord

타이어 코드용 PET 섬유의 암모니아수 처리에 따른 미세구조와 물성

  • 이기환 (부산대학교 공과대학 섬유공학과) ;
  • 방윤혁 (부산대학교 공과대학 섬유공학과) ;
  • 조현혹 (부산대학교 공과대학 섬유공학과)
  • Published : 2000.02.01

Abstract

The effect of aqueous ammonia treatment on th physical properties and structure of PET tire cord fiber having different long periods was investigated. It was found that degradation occurred mainly in the amorphous region in the initial stage, and then occurred in the crystalline region. The tenacity decreased with increase in aqueous ammonia treatment time and temperature. Molecular relaxation seems to be a dominant process during the initial stage of aqueous ammonia treatment. As the treatment time increases, chain scission appears to occur remarkably at the later stage. Aqueous ammonia treatment exhibited stronger effects on the change of physical properties and fine structure of a sample having a smaller long period than on samples having larger long periods. From these results, it is found that the chemical treatment of PET tire cord is quite different from the result observed through physical treatment (repeated extensional fatigue) in physical properties and structure.

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References

  1. Sen-i Gakkaishi v.40 S.Fukuhara
  2. Sen-i Gakkaishi v.36 S.Fukuhara
  3. Sen-i Gakkaishi v.25 S.Fukuhara
  4. J. Rubber Soc.(Japan) v.57 T.Hougen
  5. Sen-i Gakkaishi v.30 N.Yamazaki;H.Tonami
  6. Sen-i Gakkaishi v.32 Y.Saito;T.Sekine;Y.Yamamoto;S.Kinoshita
  7. Polymer v.3 G.Farrow;D.A.S.Ravens;I.M.Ward
  8. U.S. Pat. 3,051,212 W.W.Daniels(Du Pont)
  9. Sen-i Gakkaishi v.41 K.Yabuki;S.Sawada
  10. U.S. Pat., 3,446,766 R.E.Taylor(Du Pont)
  11. U.S. Pat., 4,016,142 W.Alexander;A.G.Causa;J.G.Fraser(Goodyear)
  12. U.S. Pat., 4,071,504 G.L.Korver(Goodyear)
  13. Pat.(Japan) 55-116816 K.Yabuki
  14. Polymer v.20 T.Kunugi;K.Shiratori;K.Uematsu;M.Hashimoto
  15. J. Polym. Sci. v.38 A.Miyake
  16. J. Polym. Sci. v.1 P.G.Schmidt
  17. J. Polym. Sci.: Polymer Physics Ed. v.14 L.Desposito;J.L.Koenig
  18. Polymer v.23 J.C.Engelaere;J.P.Cavrot;F.Rietsch
  19. Polymer v.34 M.E.Cagiao;F.J.Balta;C.Vanderdonckt;H.G.Zachmann
  20. Polymer v.32 R.Elenga;R.Seguela;F.Rietsch
  21. Kobunshikagaku v.26 T.Kurita
  22. Physical Properties of Textile Fibers W.E.Morton;J.W.S.Hearle
  23. J. Korean Fiber Soc. v.31 H.H.Cho;K.H.Lee