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Articles

Industrial applications of gas assisted injection moulding: numerical prediction and experimental trials

Pages 236-246 | Published online: 19 Jul 2013

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P. Olley, L. Mulvaney-Johnson & P. D. Coates. (2006) Non-isothermal experimental and simulation study of residual wall thickness in gas assisted injection moulding. Plastics, Rubber and Composites 35:2, pages 47-58.
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Articles from other publishers (5)

P. Olley. (2020) An approximation to the PTT viscoelastic model for gas assisted injection moulding simulation. Journal of Non-Newtonian Fluid Mechanics 278, pages 104246.
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Hyungpil Park & Byungohk Rhee. (2016) Effects of the viscosity and thermal property of fluids on the residual wall thickness and concentricity of the hollow products in fluid-assisted injection molding. The International Journal of Advanced Manufacturing Technology 86:9-12, pages 3255-3265.
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P Olley, L Mulvaney-Johnson & P D Coates. (2011) Simulation of the gas-assisted injection moulding process using a viscoelastic extension to the Cross-WLF viscosity model. Proceedings of the Institution of Mechanical Engineers, Part E: Journal of Process Mechanical Engineering 225:4, pages 239-254.
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A. Polynkin, J. F. T. Pittman & J. Sienz. (2007) Gas Assisted Injection Molding of an Industrial Part: 3D Simulation Provides Virtual Molding Trials. International Polymer Processing 22:2, pages 173-178.
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A. Polynkin, J.F.T. Pittman & J. Sienz. (2007) Approximate prediction of gas core geometry in gas assisted injection molding using a short cut method. Polymer Engineering & Science 47:5, pages 713-720.
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