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Studies on the theory of single screw plasticating extrusion. Part II: Non-plug flow solid conveying

✍ Scribed by Shizeng Fang; Liqin Chen; Fuhua Zhu


Publisher
Society for Plastic Engineers
Year
1991
Tongue
English
Weight
491 KB
Volume
31
Category
Article
ISSN
0032-3888

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✦ Synopsis


Abstract

A non‐plug solid conveying theory for plasticating extrusion is proposed in this paper. The polymer granules are treated as‐bulk pellets which move down the screw channel at different speeds, rather than as a plug which never experiences deformation during extrusion. The pellets system is considered as a linear elastic system, and can only resist compressive forces but riot tensile forces. Based on elastic mechanics and virtual work principles, a mathematical model for non‐plug solid conveying is proposed. Finite element method (FEM) is used to determine the relationships between internal stress and velocity profiles of the pellets in the screw channel, the internal stress states at any point in the screw channel, etc. The prediction also proved the existence of the optimum depth of the screw channel and the optimum helix angle of the screw. Most of the experiments have been carried out on an extruder with glass windows it its barrel. The experiments confirm the validity of the theory.


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Studies on the theory of single screw pl
✍ Fuhua Zhu; Liqin Chen 📂 Article 📅 1991 🏛 Society for Plastic Engineers 🌐 English ⚖ 464 KB

## Abstract An extruder specially designed for the study of the single‐screw plasticating extrusion process was constructed. Its barrel is equipped with glass windows which are located on both sides of it so that the full process of plasticating extrusion, solid conveying, melting, and melt conveyi