## Abstract The synthesis of ethene/propene macromers with a high amount of sterically unhindered vinyl groups is described. These macromers are incorporated as long‐chain branches into polyethylene (PE). The remaining low molecular fractions were removed by Soxhlet extraction. Up to 60 wt.‐% macro
Pseudohexagonal crystallinity and thermal and tensile properties of ethene–propene copolymers
✍ Scribed by Gaetano Guerra; Odda Ruiz De Ballesteros; Vincenzo Venditto; Maurizio Galimberti; Franco Sartori; Rachele Pucciariello
- Publisher
- John Wiley and Sons
- Year
- 1999
- Tongue
- English
- Weight
- 157 KB
- Volume
- 37
- Category
- Article
- ISSN
- 0887-6266
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✦ Synopsis
Structural (X-ray diffraction), melting (differential scanning calorimetry), as well as mechanical (tensile tests) characterizations on uncrosslinked ethene-propene copolymer samples, obtained using a metallocene-based catalytic system and having an ethene content in the range 80 -50% by mol, are reported. Samples with an ethene content in the range 80 -60% by mol present a disordered pseudohexagonal crystalline phase, whose melting moves from Ϸ 40°C down to Ϸ Ϫ20°C as the ethene content is reduced. The dramatic influence of the crystalline phase on tensile properties of uncrosslinked ethene-propene copolymers is shown. In particular, highest elongation at break values are obtained for samples being essentially amorphous in the unstretched state and partially crystallizing under stretching. On the other hand, lowest tension set values (most elastic behavior) are observed for samples presenting, already in the unstretched state, microcrystalline domains acting as physical crosslinks in a prevailing amorphous phase.
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