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RIM‐pultrusion of nylon‐6 and rubber‐toughened nylon‐6 composites
Polymer Engineering & Science, 1991AbstractUnidirectionally reinforced thermoplastic composites of Nylon‐6 and polypropylene oxide‐Nylon‐6 block copolymers have been prepared by the reaction injection molding (RIM)‐pultrusion process. This process takes advantage of both the RIM and the pultrusion techniques, while avoiding their inherent shortcomings.
Xin Ning, Hatsuo Ishida
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Polymorphism of nylon‐6 in multiwalled carbon nanotubes/nylon‐6 composites
Journal of Polymer Science Part B: Polymer Physics, 2006AbstractThe effects of pristine and amino‐functionalized multiwalled carbon nanotubes (MWNTs) on the crystallization behaviors of nylon‐6 were investigated by differential scanning calorimetry and X‐ray diffraction. The results indicate the presence of polymorphism in nylon‐6 and its composites, which is dependent on the MWNTs concentration and the ...
Juan Li +4 more
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Polymorphic behavior of nylon 6/saponite and nylon 6/montmorillonite nanocomposites
Polymer Engineering & Science, 2002Abstract X‐ray diffraction methods and DSC thermal analysis have been used to investigate the structural change of nylon 6/clay nanocomposites. Nylon 6/clay has prepared by the intercalation of ε‐caprolactam and then exfoliaton of the layered saponite or montmorillonite by subsequent polymerization. Both X‐ray diffraction data and DSC
Tzong‐Ming Wu +2 more
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Vibration welding of nylon 6 to nylon 66
Polymer Engineering & Science, 2004AbstractVibration welding of dissimilar nylons is a promising technique for assembling complex components made of different polymers. The effects of pressure and meltdown on the tensile strength of nylon 6 (PA 6) to nylon 66 (PA 66) vibration welds were determined in this study using an experimental design and three weld geometries. Weld strengths were
P. J. Bates, C. Dyck, M. Osti
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Mechanical anisotropy in nylon 6 and nylon 6.6
Journal of Macromolecular Science, Part B, 1973Abstract The low-strain mechanical anisotropy of cold-drawn sheets of nylon 6 has been studied over a wide range of temperatures. At room temperature the mechanical anisotropy pattern is extremely complicated. It is suggested that this relates partly to the complex structural changes associated with drawing which reflect themselves in the ...
A. J. Owen, I. M. Ward
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Piezoelectric Nylon‐11 Fibers for Electronic Textiles, Energy Harvesting and Sensing
Advanced Functional Materials, 2021Saleem Anwar +2 more
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