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Most of crystalline super engineering plastics were prepared by dehalogenation polycondensation that needs normally high reaction temperature and disposal process of halogenated compounds as by-products.
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It should be noted that this is the first example of directly transforming super-engineering plastic films into a PEM using radiation grafting.
The blending of super-engineering plastics like poly ether sulfone) (PES) with commodity polymers such as polypropylene (PP) could result in low cost materials with greatly enhanced properties, but has not been studied.
It was shown that the micelles contributed to dramatic enhancement of the thermal stability of the alloys, where the size of the super-engineering plastic in the micelle core was of the order of 10 nm.
Radiation-induced graft polymerization of sulfo-containing styrene derivatives into crystalline poly ether ether ketone) (PEEK) substrates was carried out to prepare thermally and mechanically stable polymer electrolyte membranes based on an aromatic hydrocarbon polymer, so-called "super-engineering plastics".
Polyimides are considered to be one of the most important super-engineering materials due to their thermal stability as well as the superior mechanical properties at elevated temperature[37, 38].
Eli went into Tampa, Dallas, Greenbay, and then to Arizona for the Super Bowl, engineering a final possession drive winning score in each of the final three games to propel the Giants to their third franchise Super Bowl victory.
Based on the analysis of the historical origin and importance of building Qiongzhou Strait Passageway, comparing with construction time in built and super cross-sea engineering under study in the world and comprehensively considering the passenger and cargo flow volume of Hainan Island in future 10 years and 30 years, it is believed that now is the window period of building strait passageway.
To improve the utilization of water resources on rocky slopes eco-engineering, super absorbent polymer (SAP) with the function of water retention was applied.
We're talking about nanotechnology: the catch-all term for engineering super-small features and particles to create things like ultra-sensitive medical diagnostic tools, blazingly fast electronics, and exceptionally strong materials.
Further peculiar properties of CNTs entail an even broader applicability of CNAs in engineering: super-hydrophobicity for self-cleaning surfaces [27, 28], phonon dragging by fluid flow for energy harvesting or nanosensing [29, 30], and optical properties for electrical coupling in photonic [31] or photothermal devices [8].
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