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| Content Provider | Royal Society of Chemistry (RSC) |
|---|---|
| Author | Wang, Cuilin Guo, Shaoyun Wu, Hong Wang, Jianfeng Zhang, Xianlong |
| Copyright Year | 2014 |
| Abstract | In this paper, polypropylene (PP) and polypropylene/poly(ethylene-co-octene) blends (PP/POE) were fabricated into alternating multilayered materials to improve the low-temperature toughness of PP efficiently compared with conventional PP/POE blends. POM, SEM, micro-FTIR and part-impact test were performed to characterize and investigate the alternating multilayered microstructure and its relationship with mechanical properties. The results showed that the unique alternating multilayered microstructure could generate a distinctive distribution of POE, resulting in the great change in both macro- and micro-morphology of the materials. Most interestingly, the morphological evolution of the dispersed POE phase before and after the impact showed that a brittle–ductile transition (BDT) layer was formed at the interlayer interface between the adjacent PP layer and the PP/POE layer during the impact process, which was the main reason for the great improvement of the low-temperature toughness. Moreover, the rigidity of alternating multilayered materials was maintained very well because of the existence of the rigid PP layer, indicating that the alternating multilayered microstructure was very helpful to maintain a good balance between toughness and rigidity. |
| Starting Page | 20297 |
| Ending Page | 20307 |
| Page Count | 11 |
| File Format | HTM / HTML PDF |
| ISSN | 20462069 |
| Volume Number | 4 |
| Issue Number | 39 |
| Journal | RSC Advances |
| DOI | 10.1039/c3ra48036d |
| Language | English |
| Publisher | Royal Society of Chemistry |
| Access Restriction | Open |
| Subject Keyword | Polypropylene POE |
| Content Type | Text |
| Resource Type | Article |
| Subject | Chemistry Chemical Engineering |
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