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The Influence of Rare Earth Ions on the Rheological Behavior of Polyamide 被引量:2

The Influence of Rare Earth Ions on the Rheological Behavior of Polyamide
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摘要 The polyamide 66 (PA66)/lanthanum acetate blends with small amounts of salt loadings (≤ 1 wt% of PA) have been prepared in a twin-screw extruder. The rheology of PA66 and its blends has been investigated by a rotational rheometer. The results suggested that with the salt loading in excess of 0.2 wt% the typical Newtonian viscosity plateau disappeared and both the low-frequency complex viscosities η^* and storage modulus G' of blends were much higher than those of neat PA66, the storage modulus was higher than the loss modulus at low frequencies (tanδ〈 1), i.e., the melt changed from a viscoelastic liquid for unfilled polymer to a viscoelastic solid (G′ 〉 G″). While the viscosity followed a strong shear thinning with increasing frequency, the η^* and G′ decreased significantly even lower than those of neat PA66 at high frequencies. The combination of dynamic mechanical analysis (DMA) and X-ray photoelectron spectroscopy (XPS) analysis has revealed that coordination effect occurred between lanthanum and carbonyl oxygen atoms in amide groups of the polymer to form pseudo- crosslinked network structure, which makes the glass transition temperatures (Tg) and storage modulus (E′) of blends enhanced. The network structure formation-destruction and chains entanglement-disentanglement processes at different frequencies are responsible for the above rheological behaviors of blends. The polyamide 66 (PA66)/lanthanum acetate blends with small amounts of salt loadings (≤ 1 wt% of PA) have been prepared in a twin-screw extruder. The rheology of PA66 and its blends has been investigated by a rotational rheometer. The results suggested that with the salt loading in excess of 0.2 wt% the typical Newtonian viscosity plateau disappeared and both the low-frequency complex viscosities η^* and storage modulus G' of blends were much higher than those of neat PA66, the storage modulus was higher than the loss modulus at low frequencies (tanδ〈 1), i.e., the melt changed from a viscoelastic liquid for unfilled polymer to a viscoelastic solid (G′ 〉 G″). While the viscosity followed a strong shear thinning with increasing frequency, the η^* and G′ decreased significantly even lower than those of neat PA66 at high frequencies. The combination of dynamic mechanical analysis (DMA) and X-ray photoelectron spectroscopy (XPS) analysis has revealed that coordination effect occurred between lanthanum and carbonyl oxygen atoms in amide groups of the polymer to form pseudo- crosslinked network structure, which makes the glass transition temperatures (Tg) and storage modulus (E′) of blends enhanced. The network structure formation-destruction and chains entanglement-disentanglement processes at different frequencies are responsible for the above rheological behaviors of blends.
出处 《Chinese Journal of Polymer Science》 SCIE CAS CSCD 2015年第10期1453-1461,共9页 高分子科学(英文版)
基金 financially supported by the National Science-Technology Support Plan Projects(No.2014BAC03B05) the National Natural Science Foundation of China(No.51373184) Mo ST973 Research Program(Nos.2012CB933801 and 2014CB931803)
关键词 RHEOLOGY PA66-1anthanum acetate blends Polymer-metal interaction Coordination Viscoelastic solid behavior. Rheology PA66-1anthanum acetate blends Polymer-metal interaction Coordination Viscoelastic solid behavior.
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  • 1Clement, O., Rapko, B.M. and Hay, B.P., Coord. Chem. Rev., 1998, 170(1): 203.
  • 2Ciferri, A., Bianchi, E., Marehese, F. and Tealdi, A., Makromol. Chem., 1971, 150(1): 265.
  • 3Valenti, B., Bianchi, E., Greppi, G., Tealdi, A. and Ciferri, A., J. Phys. Chem., 1973, 77(3): 389.
  • 4Wu, Y., Xu, Y., Wang, D., Zhao, Y., Weng, S., Xu, D. and Wu, J., J. Appl. Polym. Sei., 2004, 91(5): 2869.
  • 5Siegmann, A. and Baraam, Z., Int. J. Polym. Mater., 1980, 8(4): 243.
  • 6Valenti, B., Bianchi, E., Tealdi, A., Russo, S. and Ciferri, A., Macromolecules, 1976, 9(1): 117.
  • 7Siegmann, A. and Baraam, Z., J. Appl. Polym. Sci., 1980, 25(6): 1137.
  • 8Kim, H.G. and Harget, P.J., J. Appl. Phys., 1979, 50(10): 6072.
  • 9Mehta, M.J. and Andrews, R.D., Polym. Prep., 1973, 14:1260.
  • 10La Mantia, F.P. and Acierno, D., Colloid Polym. Sci., 1981, 259(7): 693.

同被引文献39

  • 1孟令明,黄锦河,林志勇,钱浩.氯化钙对尼龙6/66结晶态结构的影响[J].化学工程与装备,2007(3):20-22. 被引量:6
  • 2孙本惠.STUDY ON THE MECHANISM OF NYLON 6, 6 DISSOLVING PROCESS USING CaCl_2/MeOH AS THE SOLVENT[J].Chinese Journal of Polymer Science,1994,12(1):57-65. 被引量:9
  • 3陈红萍,吴雄,徐鹏,王海琼,叶正涛.氯化锂对尼龙6结构与性能影响的研究[J].胶体与聚合物,2007,25(1):15-17. 被引量:4
  • 4XU Y, SUN W, LI W, et al. Investigation on the interaction between polyamide and lithium salts[ J]. Journal of Applied Polymer Science, 2000,77 ( 12 ) : 2685 - 2690.
  • 5WU Y, XU Y, WANG D, et al. FTIR spectroscopic investigation on the interaction between nylon 66 and lithium salts [ J ]. Journal of Applied Polymer Science,2004,91 ( 5 ) : 2869 - 2875.
  • 6VALENTI B, BLANCH1 E, GREPPI G, et al. Bulk properties of synthetic polymer-inorganic salt systems, melting behavior of salted poly (caproamide) [ J]. The Journal of Physical Chemistry, 1973, 77(3) :389 -395.
  • 7AC1ERNO D, BIANCHI E, CIFERRI A, et al. Bulk properties of synthetic polymer inorganic salt systems. III. Flow behavior and glass transition of salted polycaproamide [J].Journal of Polymer Science Polymer Symposia, 1976,54:259 - 269.
  • 8VALENTI B, B1ANCHI E, TEALDI A, et al. Bulk properties of synthetic polymer-inorganic salt systems. IV. role of polymeric substrate [ J ]. Macromolecules, 1976 ( 9 ) : 117 - 122.
  • 9ACIERNO D, LAMANTIA F P, POLIZZOTTI G,et al. Bulk properties of synthetic polymer inorganic salt systems. V. mechanical- properties of oriented poly (caproamide) [ J ]. Journal of Polymer Science: Part B. Polymer Physics, 2010, 34 (5) : 1742 - 1752.
  • 10LIU D,ZHENG Q,LU S,et al. A new method to prepare low melting point polyamide-6 and study crystallization behavior of polyamide-6/ calcium chloride complex by theological method [ J ]. Journal of Applied Polymer Science ,2015,132 ( 8 ).

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