Ultimate Fiber

Ultimate Fiber

 

(elementary fiber), a textile (natural) fiber that cannot be divided longitudinally without destroying the structure and that can be used to fashion yarns or textiles.

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Recently introduced to the marketplace by Labosport as part of the latest addition to its Certification Program, FPI establishes the ultimate fiber 'index' - the rating of an artificial turf fiber, to help prospective turf buyers understand and weigh the individual qualities of a turf fiber.
It will be further shown that this twist-gel spinning process does not significantly affect the ultimate fiber tensile strength, Young's modulus, surface morphology, or geometry when compared with conventional gel-spinning processes.
The surface morphology and the geometry of the ultimate fibers can be seen from the SEM images in Fig.
(2) Ultimate fiber strength depends on specimen length, which is dominated by flaws statistics.
Research by Husky and others shows that design of the runner and cavity can have as much, or even more, influence on ultimate fiber length than the plasticating system.
It will be further shown that this mechanical solvent removal process does not significantly affect the ultimate fiber tensile strength, Young's modulus, surface morphology, or geometry when compared to conventional spin solvent evaporation.
It represents some cost savings versus molding long-glass pellets, but its primary advantage is longer ultimate fiber length and better properties than conventional long-glass injection molding.
Then, the composite fibers underwent thermal treatments to be converted to zinc oxide nanofibers at last.""In an electrospinning process, many factors, usually divided into process factors and solution factors, affect the form (morphology) and dimensions of the ultimate fibers. In our work, several experiments were conducted to study the phase and chemical composition as well as some physical and optical properties of the product after finding the optimal conditions (in terms of structural and morphological characteristics)."The zinc oxide nanostructure can exhibit extraordinary behaviors due to its dual semiconductive-piezoelecronic characteristics.
For example, flax ultimate fibers possess a polygonal shape with five to seven sides, and the transversal dimensions can be in the wide range of 5-76 [micro]m (11), (12).
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