1 |
Replication of surface micro-features using variothermal injection molding: Application to micro-fluidics Wlodarski PG, Pittman JFT Polymer Engineering and Science, 58(10), 1726, 2018 |
2 |
Optimization-driven design of dies for profile extrusion: Parameterization, strategy, and performance Ettinger HJ, Pittman JFT, Sienz J Polymer Engineering and Science, 53(1), 189, 2013 |
3 |
Quantified Surface Improvement Using Temperature Cycle Injection Moulding Production of Glossy Weldline-free Parts Including in Foamed and Filled Resins Modarski PG, Pittman JFT, Sienz J, Crow K, Foad R International Polymer Processing, 26(3), 323, 2011 |
4 |
Gas assisted injection molding of an industrial part: 3D simulation provides virtual molding trials Polynkin A, Pittman JFT, Sienz J International Polymer Processing, 22(2), 173, 2007 |
5 |
Approximate prediction of gas core geometry in gas assisted injection molding using a short cut method Polynkin A, Pittman JFT, Sienz J Polymer Engineering and Science, 47(5), 713, 2007 |
6 |
Gas displacing liquids from non-circular tubes: high capillary number flow of a shear-thinning liquid Polynkin A, Pittman JFT, Sienz J Chemical Engineering Science, 60(6), 1591, 2005 |
7 |
Gas displacing viscous shear thinning liquids from tubes: Effects of cooling before gas injection Belblidia F, Pittman JFT, Polynkin A, Sienz J Chemical Engineering Science, 60(17), 4953, 2005 |
8 |
3D Simulation of gas assisted injection molding analysis of primary and secondary gas penetration and comparison with experimental results Polynkin A, Pittman JFT, Sienz J International Polymer Processing, 20(2), 191, 2005 |
9 |
Gas assisted injection molding of a handle: Three-dimensional simulation and experimental verification Polynkin A, Pittman JFT, Sienz J Polymer Engineering and Science, 45(8), 1049, 2005 |
10 |
Gas displacing liquids from tubes: high capillary number flow of a power law liquid including inertia effects Polynkin A, Pittman JFT, Sienz J Chemical Engineering Science, 59(14), 2969, 2004 |