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2020 | OriginalPaper | Buchkapitel

6. Processability of Thermoplastic Composites

verfasst von : Anup K. Ghosh, Mayank Dwivedi

Erschienen in: Processability of Polymeric Composites

Verlag: Springer India

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Abstract

The basic principles of processability and the factors affecting it do not change much from thermosetting composites to thermoplastic composites. However, the processability factors, which have a profound effect on the processing of thermoplastic composites, are mentioned here.

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Literatur
1.
Zurück zum Zitat Shaffer, G.D., “An Archaeomagnetic Study of a Wattle and Daub Building Collapse,” Journal of Field Archaeology, 20 (1) (1993), p. 59. Shaffer, G.D., “An Archaeomagnetic Study of a Wattle and Daub Building Collapse,” Journal of Field Archaeology, 20 (1) (1993), p. 59.
2.
Zurück zum Zitat Pukanszky, B., Tudos, F., Kolarik, J., and Lednicky F., "Ternary Composites of Polypropylene, Elastomer, and Filler: Analysis of Phase Structure Formation", Poly. Compos., 11 (1990), p. 98.CrossRef Pukanszky, B., Tudos, F., Kolarik, J., and Lednicky F., "Ternary Composites of Polypropylene, Elastomer, and Filler: Analysis of Phase Structure Formation", Poly. Compos., 11 (1990), p. 98.CrossRef
3.
Zurück zum Zitat Brydson J.A., Plastics Materials, Sixth Edition, Butterworth Heinemann, USA, 1995. Brydson J.A., Plastics Materials, Sixth Edition, Butterworth Heinemann, USA, 1995.
5.
Zurück zum Zitat Guth, E. and Smallwood, H. J., "Limiting Law of the Reinforcement of the Rubber", Appl. Phy., 15 (1944), p. 758.CrossRef Guth, E. and Smallwood, H. J., "Limiting Law of the Reinforcement of the Rubber", Appl. Phy., 15 (1944), p. 758.CrossRef
6.
7.
Zurück zum Zitat Dwivedi, M., Alam, S., and Verma, G.L., “Effect of Nano-barium Titanate on Mechanical, Electrical, and Solubility Performances of Ferrite-Filled Poly (ether ether ketone) (PEEK) Composites,” Polymer International, 54 (2) (2004), p. 401.CrossRef Dwivedi, M., Alam, S., and Verma, G.L., “Effect of Nano-barium Titanate on Mechanical, Electrical, and Solubility Performances of Ferrite-Filled Poly (ether ether ketone) (PEEK) Composites,” Polymer International, 54 (2) (2004), p. 401.CrossRef
8.
Zurück zum Zitat Varma, I.K., Gupta, A., Sangita, and Varma, D.S., "Addition Polyimides. I", J. Poly Sci., 28 (1983), p. 191. Varma, I.K., Gupta, A., Sangita, and Varma, D.S., "Addition Polyimides. I", J. Poly Sci., 28 (1983), p. 191.
9.
Zurück zum Zitat Varma, I.K., Sangita, and Varma, D.S., "Addition Polyimides. IV. Effect of Structure on Thermal Characteristics", J. Poly Sci., 29 (1984), p. 2807. Varma, I.K., Sangita, and Varma, D.S., "Addition Polyimides. IV. Effect of Structure on Thermal Characteristics", J. Poly Sci., 29 (1984), p. 2807.
10.
Zurück zum Zitat Siegmann, A. and Turi, E.A., J. Macromol. Sci.- Phys., B10(4) (1974), p. 689.CrossRef Siegmann, A. and Turi, E.A., J. Macromol. Sci.- Phys., B10(4) (1974), p. 689.CrossRef
11.
Zurück zum Zitat Corten, H.T., Engineering Design for Plastics, Baer E., Ed., Reinhold Publishing Corporation, New York, 1964. Corten, H.T., Engineering Design for Plastics, Baer E., Ed., Reinhold Publishing Corporation, New York, 1964.
12.
Zurück zum Zitat Russo, P., Cimino, F., Acierno, D., Giovanni, L., and Petrarca, C., “Poly(Butylene Terephthalate) Based Composites Containing Alumina Whiskers: Influence of Filler Functionalization on Dielectric Properties,” International Journal of Polymer Science, 2014 (2014), p. 1.CrossRef Russo, P., Cimino, F., Acierno, D., Giovanni, L., and Petrarca, C., “Poly(Butylene Terephthalate) Based Composites Containing Alumina Whiskers: Influence of Filler Functionalization on Dielectric Properties,” International Journal of Polymer Science, 2014 (2014), p. 1.CrossRef
13.
Zurück zum Zitat Dwivedi, M., Gaur, K. K., Alam, S., Bhatnagar, N., and Ghosh, A. K., “Processing of Polyetherimide/Cloisite 30B Nanocomposite by Vibration Casting Method,” International Polymer Processing, XXIX, 2014, p. 635. Dwivedi, M., Gaur, K. K., Alam, S., Bhatnagar, N., and Ghosh, A. K., “Processing of Polyetherimide/Cloisite 30B Nanocomposite by Vibration Casting Method,” International Polymer Processing, XXIX, 2014, p. 635.
14.
Zurück zum Zitat Dwivedi, M., Dixit, A., Alam, S., and Ghosh, A. K., “Dielectric and Tensile Behaviour of Nanoclay Reinforced Polyetherimide Nanocomposites,” Journal of Applied Polymer Science, 122 (2) (2011), p. 1040.CrossRef Dwivedi, M., Dixit, A., Alam, S., and Ghosh, A. K., “Dielectric and Tensile Behaviour of Nanoclay Reinforced Polyetherimide Nanocomposites,” Journal of Applied Polymer Science, 122 (2) (2011), p. 1040.CrossRef
15.
Zurück zum Zitat Young, R., Handbook of Fibre Glass and Advanced Plastics Composites, Lubin, G., ed., Van Nostrand Reinhold Company, New York, 1969. Young, R., Handbook of Fibre Glass and Advanced Plastics Composites, Lubin, G., ed., Van Nostrand Reinhold Company, New York, 1969.
16.
Zurück zum Zitat Gandhi, K.S. and Burns, R., "Rheological Propereties of Glass-reinforced Dough Moulding Compounds", Trans. Rheo Soc., 20 (1976), 489.CrossRef Gandhi, K.S. and Burns, R., "Rheological Propereties of Glass-reinforced Dough Moulding Compounds", Trans. Rheo Soc., 20 (1976), 489.CrossRef
17.
Zurück zum Zitat Suddel, B.C. and Evans, W.J., “Natural fibre composites in automotive applications,” Natural Fibres, Biopolymers, and Biocomposites, (Eds. Mohanty, A.K., Misra, M., and Drzal, L.T.), CRC Press, Taylor & Francis, 2005. Suddel, B.C. and Evans, W.J., “Natural fibre composites in automotive applications,” Natural Fibres, Biopolymers, and Biocomposites, (Eds. Mohanty, A.K., Misra, M., and Drzal, L.T.), CRC Press, Taylor & Francis, 2005.
18.
Zurück zum Zitat Sabir, M.I., Xu, X. and Li, L., “A review of biodegradable polymeric materials for bone tissue engineering applications,” J. Mater. Sci., 44(21) (2009), p. 5713.CrossRef Sabir, M.I., Xu, X. and Li, L., “A review of biodegradable polymeric materials for bone tissue engineering applications,” J. Mater. Sci., 44(21) (2009), p. 5713.CrossRef
19.
Zurück zum Zitat “Reiforced thermoplastic composite for washing machnine tub,” FRP Today, 14 (3), March 2014, p. 18. “Reiforced thermoplastic composite for washing machnine tub,” FRP Today, 14 (3), March 2014, p. 18.
20.
Zurück zum Zitat “All Thermoplastic Composites Smartphone Back Covers,” FRP Today, 14 (3), March 2014, p. 22. “All Thermoplastic Composites Smartphone Back Covers,” FRP Today, 14 (3), March 2014, p. 22.
Metadaten
Titel
Processability of Thermoplastic Composites
verfasst von
Anup K. Ghosh
Mayank Dwivedi
Copyright-Jahr
2020
Verlag
Springer India
DOI
https://doi.org/10.1007/978-81-322-3933-8_6

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