1 |
Efficient bead-chain model for predicting fiber motion during molding of fiber-reinforced thermoplastics Sasayama T, Inagaki M Journal of Non-Newtonian Fluid Mechanics, 264, 135, 2019 |
2 |
Simplified bead-chain model for direct fiber simulation in viscous flow Sasayama T, Inagaki M Journal of Non-Newtonian Fluid Mechanics, 250, 52, 2017 |
3 |
Performance simulation of a multi-VMD desalination process including the recycle flow Shim SM, Lee JG, Kim WS Desalination, 338, 39, 2014 |
4 |
Effect of Shape and Orientation of Carbon Steel Fiber on the Modulus of Epoxy-Based Composite Ghoraishi MS, Zadhoush A, GharehAghaji AA Journal of Applied Polymer Science, 121(1), 469, 2011 |
5 |
Accessibility of Acrylic Fiber to Basic Dye Wang HH Journal of Applied Polymer Science, 111(1), 189, 2009 |
6 |
A modified model and algorithm for flow-enhanced crystallization -Application to fiber spinning Shrikhande P, Kohler WH, McHugh AJ Journal of Applied Polymer Science, 100(4), 3240, 2006 |
7 |
Feasibility Study on the Separation of Uranium and Thorium by a Hollow Fiber Supported Liquid Membrane and Mass Transfer Modeling Ura P, Prakorn R, Weerawat P, Milan H Journal of Industrial and Engineering Chemistry, 12(5), 673, 2006 |
8 |
Mass transfer modeling of membrane carrier system for extraction of Ce(IV) from sulfate media using hollow fiber supported liquid membrane Prakorn R, Weerawat P, Ura P Korean Journal of Chemical Engineering, 23(1), 85, 2006 |
9 |
Unconventionally modeling analysis of permeate flux for ultrafiltration in hollow-fiber modules Yeh HM, Yeh YJ, Chen YF Journal of the Chinese Institute of Chemical Engineers, 36(4), 349, 2005 |
10 |
Studies on high-speed melt spinning of noncircular cross-section fibers. III. Modeling of melt spinning process incorporating change in cross-sectional shape Takarada W, Ito H, Kikutani T, Okui N Journal of Applied Polymer Science, 80(9), 1589, 2001 |