Development of Planar Orientation in Polymer Processing
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Masao Horio
Abstract
A critical discussion is presented of the development of planar orientations in various polymer processing operations. These include tubular blown film and subsequently drawn and multiply stretched blown films. The response of polyethylene, various nylons, poly(ethylene ter ephthalate), cellulose and poly(p-phenylene terephthalamide) are discussed.
Acknowledgment
This paper is based on many works of my colleagues with whom I have ever been privileged to work together. Thanks are due to Professor Emeritus Keinosuke Kobayashi of Kyoto University, Professor Emeritus Masataka Kurokawa of Kyoto University of Arts and Textile Fibers, Professor Toshisada Takahashi of Fukui University and Professor Takashi Konishi of Kyoto University of Arts and Textile Fibers. Thanks are given to Mr. Shozo Murakami, Institute for Chemical Research of Kyoto University, for kind technical assistance.
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Articles in the same Issue
- Contents
- Original Contributions
- Development of Planar Orientation in Polymer Processing
- Orientation and Residual Stress Distributions in Thick Melt Spun Polystyrene and Polycarbonate Filaments
- Experimental and Theoretical Approach to the Extrusion of Rubber Compounds with a Two-Stage Screw**
- The Characteristic Behaviour of the Stretch-Orientation Zone during High-Speed PET Spinning**
- Polymer Compounding Process for Controlled Peroxide-Degradation of PP
- The Modelling of Mold Filling in Resin Transfer Molding
Articles in the same Issue
- Contents
- Original Contributions
- Development of Planar Orientation in Polymer Processing
- Orientation and Residual Stress Distributions in Thick Melt Spun Polystyrene and Polycarbonate Filaments
- Experimental and Theoretical Approach to the Extrusion of Rubber Compounds with a Two-Stage Screw**
- The Characteristic Behaviour of the Stretch-Orientation Zone during High-Speed PET Spinning**
- Polymer Compounding Process for Controlled Peroxide-Degradation of PP
- The Modelling of Mold Filling in Resin Transfer Molding