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1

Schlechter, Melvin. Composites: Resins, fillers, reinforcements, natural fibers and nanocomposites. Norwalk, CT: Business Communications Co., 2002.

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2

Shipton, Paul David. The compounding of short fibre reinforced thermoplastic composites. Uxbridge: Brunel University, 1988.

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3

Unger, William James. Reduction of the free-edge effect in fibre-reinforced thermoplastic laminates by localized reconsolidation. [Toronto, Ont.]: University of Toronto, Dept. of Aerospace Science and Engineering, 1993.

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4

Domb, Moshe Mario. Analysis of thermal residual stresses during processing of fibre-reinforced thermoplastic composites. [Toronto, Ont.]: University of Toronto, Graduate Dept. of Aerospace Science and Engineering, 1995.

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5

Prachar, Michael. Characterisation, processing and mechanical properties of alumina particulate reinforced thermoplastic composites. Birmingham: University of Birmingham, 1998.

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6

R, Jones Mitchell, and Rosato Donald V, eds. Guide to short fiber reinforced plastics. Munich: Hanser, 1998.

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7

Cogswell, F. N. Thermoplastic aromatic polymer composites: A study of the structure, processing, and properties of carbon fibre reinforced polyetheretherketone and related materials. Oxford [England]: Butterworth-Heinemann, 1992.

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8

Emeanuwa, Polycarp Chinaedu. Structure and properties of internal weld lines in injection moulded thermoplastics and short fibre reinforced composites. Uxbridge: Brunel University, 1987.

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9

C, Loos Alfred, and United States. National Aeronautics and Space Administration., eds. Interfacial strength development in thermoplastic resins and fiber-reinforced thermoplastic composites. Blacksburg, Va: College of Engineering, Virginia Polytechnic and State University, 1987.

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10

H, Hou T., Tiwari S. N, and United States. National Aeronautics and Space Administration., eds. Analysis of pultrusion processing for long fiber reinforced thermoplastic composite system. Norfolk, Va: Old Dominion University, 1993.

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11

Analysis of pultrusion processing for long fiber reinforced thermoplastic composite system. Norfolk, Va: Old Dominion University, 1993.

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12

An improved compression molding technology for continuous fiber reinforced composite laminate: Part 1: AS-4/LaRC-TPI 1500 (HFG) prepreg system. Hampton, Va: National Aeronautics and Space Administration, Langley Research Center, 1991.

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13

Han, Chang Dae. Rheology and Processing of Polymeric Materials: Volume 2: Polymer Processing. Oxford University Press, 2006. http://dx.doi.org/10.1093/oso/9780195187830.001.0001.

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Volume 2 presents the fundamental principles related to polymer processign operations including the processing of thermoplastic polymers and thermosets. The objective of this volume is not to provide recipies that necessarily guarantee better product quality. Rather, emphasis is placed on presenting a fundamental approach to effectively analyze processing operations. The specific polymer processing operations for thermoplastics include plasticating single-screw extrusion, morphology evolution during compounding of polymer blends, compatibilization of immiscible polymer blends, wire coating extrusion, fiber spinning, tubular film blowing, coextrusion, and thermoplastic foam extrusion. The specific polymer processing operations for thermosets include reaction injection molding, pultrusion of fiber-reinforced thermosets, and compression molding of thermoset composites.
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14

Cuff, Gerald. Fibre Reinforced Industrial Thermoplastic Composites. Woodhead Publishing, Ltd., 1996.

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15

Unger, William James. Reduction of the free-edge effect in fibre-reinforced thermoplastic laminates by localized reconsolidation. 1993.

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16

Domb, Moshe Mario. Analysis of thermal residual stresses during processing of fibre-reinforced thermoplastic composites. 1995.

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17

Polymers and Composites: Recent Trends. South Asia Books, 1990.

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18

India. Dept. of Science and Technology. and Seminar on "Recent Trends in Polymers and Their Composites" (1986 : New Delhi, India), eds. Polymers and composites: Recent trends : proceedings of national seminar. New Delhi: Oxford & IBH Pub. Co., 1989.

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19

United States. National Aeronautics and Space Administration, ed. The correlation of low-velocity impact resistance of graphite-fiber-reinforced composites with matrix properties. [Washington, D.C: National Aeronautics and Space Administration, 1986.

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20

United States. National Aeronautics and Space Administration., ed. The correlation of low-velocity impact resistance of graphite-fiber-reinforced composites with matrix properties. [Washington, D.C: National Aeronautics and Space Administration, 1986.

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21

The correlation of low-velocity impact resistance of graphite-fiber-reinforced composites with matrix properties. [Washington, D.C: National Aeronautics and Space Administration, 1986.

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22

United States. National Aeronautics and Space Administration., ed. The correlation of low-velocity impact resistance of graphite-fiber-reinforced composites with matrix properties. [Washington, D.C: National Aeronautics and Space Administration, 1986.

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23

United States. National Aeronautics and Space Administration., ed. The correlation of low-velocity impact resistance of graphite-fiber-reinforced composites with matrix properties. [Washington, D.C: National Aeronautics and Space Administration, 1986.

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24

United States. National Aeronautics and Space Administration, ed. The correlation of low-velocity impact resistance of graphite-fiber-reinforced composites with matrix properties. [Washington, D.C: National Aeronautics and Space Administration, 1986.

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25

Koerdt, Maximilian. Development and Analysis of the Processing of Hybrid Textiles into Endless-Fibre-reinforced Thermoplastic Composites. Logos Verlag Berlin, 2020.

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26

F, Babington Mary, Mapes Jennifer L, Socha Sean T, Senturia Dagfinn, and Freedonia Group, eds. Reinforced plastics. Cleveland: Freedonia Group, 1999.

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27

The Development of Rubber Forming As a Rapid Thermoforming Technique for Continuous Fibre Reinforced Thermoplastic Composites. Delft Univ Pr, 1994.

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