Download Polymer Composites – Polyolefin Fractionation – Polymeric by Ben Alcock, Ton Peijs (auth.), Akihiro Abe, Hans-Henning PDF

By Ben Alcock, Ton Peijs (auth.), Akihiro Abe, Hans-Henning Kausch, Martin Möller, Harald Pasch (eds.)

Technology and improvement of Self-Reinforced Polymer Composites, by way of Ben Alcock und Ton Peijs; contemporary Advances in High-Temperature Fractionation of Polyolefins, through Harald Pasch, Muhammad Imran Malik und Tibor Macko ; Antibacterial Peptidomimetics: Polymeric artificial Mimics of Antimicrobial Peptides, by means of Karen Lienkamp, Ahmad E. Madkour und Gregory N. Tew; Collagen in Human Tissues: constitution, functionality, and Biomedical Implications from a Tissue Engineering standpoint, by means of Molamma P. Prabhakaran;

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Additional resources for Polymer Composites – Polyolefin Fractionation – Polymeric Peptidomimetics – Collagens

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This crosslinking treatment was shown to increase the mechanical properties of the final composite constructs and may also enhance interfibrillar bonding. The use of crosslinking to enhance the mechanical properties of hot compacted PE fibres was also reported by Ward and Hine, although in this case, crosslinking was achieved by gamma irradiation in an atmosphere of acetylene [33]. A further variation on the hot compaction processing route to create PE-based self-reinforced polymer composites was presented by Rein et al.

120] and Teckoe et al. [142] also reported on the morphology of these structures, and made useful comparisons to the morphology of the hot compacted PE composites reported previously. As this technique developed, the mechanical properties and morphology of self-reinforced polymer composites produced by hot compaction of fabrics of PP multifilament yarns, fibrillated tapes and flat tapes were reported by Hine et al. [143] and Jordan et al. [144]. The effect of different weave styles and precursor reinforcements on the final mechanical and interfacial properties of the composite laminates was reported.

Presented the hot compaction of PP fibres to create unidirectional PP fibre-reinforced PP composites [138], although in this early report, controllable selective surface melting was not reported to be sufficient to give good interfibrillar bonding. However, in subsequent publications using various PP fibres and also, importantly, PP tapes, the hot compaction process was very successfully applied to create self-reinforced PP composites [139–141]. Later, Abo El-Maaty et al. [120] and Teckoe et al.

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