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Erschienen in: Polymer Bulletin 12/2014

01.12.2014 | Original Paper

Exfoliation of organic montmorillonite in iPP free of compatibilizer through the multistage stretching extrusion

verfasst von: Fan Lei, Shuo Yang, Mingtao Yang, Jiang Li, Shaoyun Guo

Erschienen in: Polymer Bulletin | Ausgabe 12/2014

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Abstract

Polypropylene (PP)/organic montmorillonite (OMMT) nanocomposites were first prepared through twin-screw extruder and then subjected to multistage stretching extrusion with an assembly of laminating-multiplying elements (LMEs, which divide and recombine polymer melts). The exfoliated efficiency of LMEs on OMMT dispersed in PP matrix was investigated by optical microscopy, scanning electron microscope, transmission electron microscopy and X-ray diffraction. Because of the absence of compatibilizer, molecular chains of PP were not intercalated into the galleries of OMMT during the multistage stretching extrusion. The exfoliation of OMMT was induced by the strong force occurred in LMEs, which can destruct van der Waal’s interaction between the laminate OMMT platelets. The exfoliation degree of OMMT has been improved with the increase of number of LMEs used. The dispersion morphology of OMMT was thermodynamically stable after secondary melt processing. As a result, the mechanical properties of composites have been enhanced with increasing LME number. We realized the exfoliation of OMMT by the function of strong shear field without the incorporation of compatibilizer.

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Literatur
1.
Zurück zum Zitat Gaharwar AK, Schexnailder PJ, Dundigalla A, White JD, Matos-Pérez CR, Cloud JL, Seifert S, Wilker JJ, Schmidt G (2011) Highly extensible bio-nanocomposite fibers. Macromol Rapid Commun 32(1):50–57CrossRef Gaharwar AK, Schexnailder PJ, Dundigalla A, White JD, Matos-Pérez CR, Cloud JL, Seifert S, Wilker JJ, Schmidt G (2011) Highly extensible bio-nanocomposite fibers. Macromol Rapid Commun 32(1):50–57CrossRef
2.
Zurück zum Zitat Rooj S, Das A, Stöckelhuber KW, Wang D-Y, Galiatsatos V, Heinrich G (2013) Understanding the reinforcing behavior of expanded clay particles in natural rubber compounds. Soft Matter 9(14):3798–3808CrossRef Rooj S, Das A, Stöckelhuber KW, Wang D-Y, Galiatsatos V, Heinrich G (2013) Understanding the reinforcing behavior of expanded clay particles in natural rubber compounds. Soft Matter 9(14):3798–3808CrossRef
3.
Zurück zum Zitat Vijayan PP, Puglia D, Kenny JM, Thomas S (2013) Effect of organically modified nanoclay on the miscibility, rheology, morphology and properties of epoxy/carboxyl-terminated (butadiene-co-acrylonitrile) blend. Soft Matter 9(10):2899–2911CrossRef Vijayan PP, Puglia D, Kenny JM, Thomas S (2013) Effect of organically modified nanoclay on the miscibility, rheology, morphology and properties of epoxy/carboxyl-terminated (butadiene-co-acrylonitrile) blend. Soft Matter 9(10):2899–2911CrossRef
4.
Zurück zum Zitat Pujala RK, Bohidar H (2012) Ergodicity breaking and aging dynamics in laponite–montmorillonite mixed clay dispersions. Soft Matter 8(22):6120–6127CrossRef Pujala RK, Bohidar H (2012) Ergodicity breaking and aging dynamics in laponite–montmorillonite mixed clay dispersions. Soft Matter 8(22):6120–6127CrossRef
5.
Zurück zum Zitat Chen B, Evans JR (2009) Impact strength of polymer-clay nanocomposites. Soft Matter 5(19):3572–3584CrossRef Chen B, Evans JR (2009) Impact strength of polymer-clay nanocomposites. Soft Matter 5(19):3572–3584CrossRef
6.
Zurück zum Zitat Tang Y, Hu Y, Song L, Zong R, Gui Z, Chen Z, Fan W (2003) Preparation and thermal stability of polypropylene/montmorillonite nanocomposites. Polym Degrad Stab 82(1):127–131CrossRef Tang Y, Hu Y, Song L, Zong R, Gui Z, Chen Z, Fan W (2003) Preparation and thermal stability of polypropylene/montmorillonite nanocomposites. Polym Degrad Stab 82(1):127–131CrossRef
7.
Zurück zum Zitat Zehetmeyer G, Scheibel J, Soares R, Weibel D, Oviedo M, Oliveira R (2013) Morphological, optical, and barrier properties of PP/MMT nanocomposites. Polym Bull 70(8):2181–2191CrossRef Zehetmeyer G, Scheibel J, Soares R, Weibel D, Oviedo M, Oliveira R (2013) Morphological, optical, and barrier properties of PP/MMT nanocomposites. Polym Bull 70(8):2181–2191CrossRef
8.
Zurück zum Zitat Lim S, Kim J, Chin I, Kwon Y, Choi H (2002) Preparation and interaction characteristics of organically modified montmorillonite nanocomposite with miscible polymer blend of poly (ethylene oxide) and poly (methyl methacrylate). Chem Mater 14(5):1989–1994CrossRef Lim S, Kim J, Chin I, Kwon Y, Choi H (2002) Preparation and interaction characteristics of organically modified montmorillonite nanocomposite with miscible polymer blend of poly (ethylene oxide) and poly (methyl methacrylate). Chem Mater 14(5):1989–1994CrossRef
9.
Zurück zum Zitat Suter JL, Coveney PV (2009) Computer simulation study of the materials properties of intercalated and exfoliated poly (ethylene) glycol clay nanocomposites. Soft Matter 5(11):2239–2251CrossRef Suter JL, Coveney PV (2009) Computer simulation study of the materials properties of intercalated and exfoliated poly (ethylene) glycol clay nanocomposites. Soft Matter 5(11):2239–2251CrossRef
10.
Zurück zum Zitat Wang Y, Zhang Q, Fu Q (2003) Compatibilization of immiscible poly (propylene)/polystyrene blends using clay. Macromol Rapid Commun 24(3):231–235CrossRef Wang Y, Zhang Q, Fu Q (2003) Compatibilization of immiscible poly (propylene)/polystyrene blends using clay. Macromol Rapid Commun 24(3):231–235CrossRef
11.
Zurück zum Zitat Sinha Ray S, Bousmina M (2005) Compatibilization efficiency of organoclay in an immiscible polycarbonate/poly (methyl methacrylate) blend. Macromol Rapid Commun 26(6):450–455CrossRef Sinha Ray S, Bousmina M (2005) Compatibilization efficiency of organoclay in an immiscible polycarbonate/poly (methyl methacrylate) blend. Macromol Rapid Commun 26(6):450–455CrossRef
12.
Zurück zum Zitat Dong Y, Bhattacharyya D (2012) Investigation on the competing effects of clay dispersion and matrix plasticisation for polypropylene/clay nanocomposites. Part I: morphology and mechanical properties. J Mater Sci 47(8):3900–3912CrossRef Dong Y, Bhattacharyya D (2012) Investigation on the competing effects of clay dispersion and matrix plasticisation for polypropylene/clay nanocomposites. Part I: morphology and mechanical properties. J Mater Sci 47(8):3900–3912CrossRef
13.
Zurück zum Zitat Pavlidou S, Papaspyrides C (2008) A review on polymer–layered silicate nanocomposites. Prog Polym Sci 33(12):1119–1198CrossRef Pavlidou S, Papaspyrides C (2008) A review on polymer–layered silicate nanocomposites. Prog Polym Sci 33(12):1119–1198CrossRef
14.
Zurück zum Zitat Panwar A, Choudhary V, Sharma D (2013) Role of compatibilizer and processing method on the mechanical, thermal and barrier properties of polystyrene/organoclay nanocomposites. J Reinf Plast Compos 32(10):740–757CrossRef Panwar A, Choudhary V, Sharma D (2013) Role of compatibilizer and processing method on the mechanical, thermal and barrier properties of polystyrene/organoclay nanocomposites. J Reinf Plast Compos 32(10):740–757CrossRef
15.
Zurück zum Zitat He A, Wang L, Li J, Dong J, Han CC (2006) Preparation of exfoliated isotactic polypropylene/alkyl-triphenylphosphonium-modified montmorillonite nanocomposites via in situ intercalative polymerization. Polymer 47(6):1767–1771CrossRef He A, Wang L, Li J, Dong J, Han CC (2006) Preparation of exfoliated isotactic polypropylene/alkyl-triphenylphosphonium-modified montmorillonite nanocomposites via in situ intercalative polymerization. Polymer 47(6):1767–1771CrossRef
16.
Zurück zum Zitat Liu X, Wu Q (2001) PP/clay nanocomposites prepared by grafting-melt intercalation. Polymer 42(25):10013–10019CrossRef Liu X, Wu Q (2001) PP/clay nanocomposites prepared by grafting-melt intercalation. Polymer 42(25):10013–10019CrossRef
17.
Zurück zum Zitat Jiang G, Huang HX (2011) Melt-compounding of PP/clay nanocomposite and relationship between its microstructure and shear strain in the flow field based on rheological analysis. Polym Eng Sci 51(11):2345–2352CrossRef Jiang G, Huang HX (2011) Melt-compounding of PP/clay nanocomposite and relationship between its microstructure and shear strain in the flow field based on rheological analysis. Polym Eng Sci 51(11):2345–2352CrossRef
18.
Zurück zum Zitat Liu W, Liu B, Wang X (2013) Morphology, rheological properties, and crystallization behavior of polypropylene/clay nanocomposites. Int J Polym Mater 62(3):164–171CrossRef Liu W, Liu B, Wang X (2013) Morphology, rheological properties, and crystallization behavior of polypropylene/clay nanocomposites. Int J Polym Mater 62(3):164–171CrossRef
19.
Zurück zum Zitat Hong CH, Lee YB, Bae JW, Jho JY, Nam BU, Nam GJ, Lee KJ (2005) Tensile and flammability properties of polypropylene-based RTPO/clay nanocomposites for cable insulating material. J Appl Polym Sci 97(6):2375–2381CrossRef Hong CH, Lee YB, Bae JW, Jho JY, Nam BU, Nam GJ, Lee KJ (2005) Tensile and flammability properties of polypropylene-based RTPO/clay nanocomposites for cable insulating material. J Appl Polym Sci 97(6):2375–2381CrossRef
20.
Zurück zum Zitat Zhu S, Chen J, Zuo Y, Li H, Cao Y (2011) Montmorillonite/polypropylene nanocomposites: mechanical properties, crystallization and rheological behaviors. Appl Clay Sci 52(1):171–178CrossRef Zhu S, Chen J, Zuo Y, Li H, Cao Y (2011) Montmorillonite/polypropylene nanocomposites: mechanical properties, crystallization and rheological behaviors. Appl Clay Sci 52(1):171–178CrossRef
21.
Zurück zum Zitat Meng X, Wang Z, Yu H, Du X, Li S, Wang Y, Jiang Z, Wang Q, Tang T (2009) A strategy of fabricating exfoliated thermoplastic polyurethane/clay nanocomposites via introducing maleated polypropylene. Polymer 50(16):3997–4006CrossRef Meng X, Wang Z, Yu H, Du X, Li S, Wang Y, Jiang Z, Wang Q, Tang T (2009) A strategy of fabricating exfoliated thermoplastic polyurethane/clay nanocomposites via introducing maleated polypropylene. Polymer 50(16):3997–4006CrossRef
22.
Zurück zum Zitat Homminga D, Goderis B, Hoffman S, Reynaers H, Groeninckx G (2005) Influence of shear flow on the preparation of polymer layered silicate nanocomposites. Polymer 46(23):9941–9954CrossRef Homminga D, Goderis B, Hoffman S, Reynaers H, Groeninckx G (2005) Influence of shear flow on the preparation of polymer layered silicate nanocomposites. Polymer 46(23):9941–9954CrossRef
23.
Zurück zum Zitat Zhu L, Xanthos M (2004) Effects of process conditions and mixing protocols on structure of extruded polypropylene nanocomposites. J Appl Polym Sci 93(4):1891–1899CrossRef Zhu L, Xanthos M (2004) Effects of process conditions and mixing protocols on structure of extruded polypropylene nanocomposites. J Appl Polym Sci 93(4):1891–1899CrossRef
24.
Zurück zum Zitat Kubišová H, Měřínská D, Svoboda P (2010) PP/clay nanocomposite: optimization of mixing conditions with respect to mechanical properties. Polym Bull 65(5):533–541CrossRef Kubišová H, Měřínská D, Svoboda P (2010) PP/clay nanocomposite: optimization of mixing conditions with respect to mechanical properties. Polym Bull 65(5):533–541CrossRef
25.
Zurück zum Zitat Xu S, Wen M, Li J, Guo S, Wang M, Du Q, Shen J, Zhang Y, Jiang S (2008) Structure and properties of electrically conducting composites consisting of alternating layers of pure polypropylene and polypropylene with a carbon black filler. Polymer 49(22):4861–4870CrossRef Xu S, Wen M, Li J, Guo S, Wang M, Du Q, Shen J, Zhang Y, Jiang S (2008) Structure and properties of electrically conducting composites consisting of alternating layers of pure polypropylene and polypropylene with a carbon black filler. Polymer 49(22):4861–4870CrossRef
26.
Zurück zum Zitat Wen M, Sun X, Su L, Shen J, Li J, Guo S (2012) The electrical conductivity of carbon nanotube/carbon black/polypropylene composites prepared through multistage stretching extrusion. Polymer 53(7):1602–1610CrossRef Wen M, Sun X, Su L, Shen J, Li J, Guo S (2012) The electrical conductivity of carbon nanotube/carbon black/polypropylene composites prepared through multistage stretching extrusion. Polymer 53(7):1602–1610CrossRef
27.
Zurück zum Zitat Shen J, Wang M, Li J, Guo S (2011) In situ fibrillation of polyamide 6 in isotactic polypropylene occurring in the laminating-multiplying die. Polym Adv Technol 22(2):237–245CrossRef Shen J, Wang M, Li J, Guo S (2011) In situ fibrillation of polyamide 6 in isotactic polypropylene occurring in the laminating-multiplying die. Polym Adv Technol 22(2):237–245CrossRef
28.
Zurück zum Zitat Park JH, Jana SC (2003) Mechanism of exfoliation of nanoclay particles in epoxy-clay nanocomposites. Macromolecules 36(8):2758–2768CrossRef Park JH, Jana SC (2003) Mechanism of exfoliation of nanoclay particles in epoxy-clay nanocomposites. Macromolecules 36(8):2758–2768CrossRef
29.
Zurück zum Zitat Fornes T, Yoon P, Keskkula H, Paul D (2001) Nylon 6 nanocomposites: the effect of matrix molecular weight. Polymer 42(25):09929–09940CrossRef Fornes T, Yoon P, Keskkula H, Paul D (2001) Nylon 6 nanocomposites: the effect of matrix molecular weight. Polymer 42(25):09929–09940CrossRef
Metadaten
Titel
Exfoliation of organic montmorillonite in iPP free of compatibilizer through the multistage stretching extrusion
verfasst von
Fan Lei
Shuo Yang
Mingtao Yang
Jiang Li
Shaoyun Guo
Publikationsdatum
01.12.2014
Verlag
Springer Berlin Heidelberg
Erschienen in
Polymer Bulletin / Ausgabe 12/2014
Print ISSN: 0170-0839
Elektronische ISSN: 1436-2449
DOI
https://doi.org/10.1007/s00289-014-1254-7

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