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Veröffentlicht/Copyright:
2. Oktober 2020
Published Online: 2020-10-02
Published in Print: 2020-10-25
©2020 Walter de Gruyter GmbH, Berlin/Boston
Artikel in diesem Heft
- Frontmatter
- Editorial
- Special issue: Polymer engineering rheology
- Material properties
- Volume fraction and width of ribbon-like crystallites control the rubbery modulus of segmented block copolymers
- Influence of trisilanol isooctyl POSS content on the structure, morphology and rheological properties of thermoplastic polyurethane (TPU)
- Engineering and processing
- Oscillating shear capillary rheometry (OSCAR) for polymer melts
- Plastic drawing response in the biaxially oriented polypropylene (BOPP) process: polymer structure and film casting effects
- A quantitative study on using digital photoelasticity for characterising the effect of the stretching speed on the necking phenomenon
- Effects of structure and processing on the surface roughness of extruded co-continuous poly(ethylene) oxide/ethylene-vinyl acetate blends
- Processability predictions for mechanically recycled blends of linear polymers
- Prediction of the maximum flow length of a thin injection molded part
Artikel in diesem Heft
- Frontmatter
- Editorial
- Special issue: Polymer engineering rheology
- Material properties
- Volume fraction and width of ribbon-like crystallites control the rubbery modulus of segmented block copolymers
- Influence of trisilanol isooctyl POSS content on the structure, morphology and rheological properties of thermoplastic polyurethane (TPU)
- Engineering and processing
- Oscillating shear capillary rheometry (OSCAR) for polymer melts
- Plastic drawing response in the biaxially oriented polypropylene (BOPP) process: polymer structure and film casting effects
- A quantitative study on using digital photoelasticity for characterising the effect of the stretching speed on the necking phenomenon
- Effects of structure and processing on the surface roughness of extruded co-continuous poly(ethylene) oxide/ethylene-vinyl acetate blends
- Processability predictions for mechanically recycled blends of linear polymers
- Prediction of the maximum flow length of a thin injection molded part