Anisotropy of Wool
- 1 December 1985
- journal article
- research article
- Published by SAGE Publications in Textile Research Journal
- Vol. 55 (12) , 718-725
- https://doi.org/10.1177/004051758505501202
Abstract
The quantitative relationship is examined between torsion and tensile experiments done on wool fibers at various conditions of humidity and temperature. The relation ship between torsion and tension measurements on a two component fiber depends on the volume fraction of the two mechanically distinct components. The two me chanical phases of the wool fiber are first assumed to be isotropic, but no assumption is made about their volume fraction. On this basis a mechanically elastic phase refers to approximately 5% of the fiber, not about 50% as is sometimes supposed. The re maining 95% of the fiber acts mechanically as a water penetrable viscoelastic matrix. Allowance for anistropy in the mechanically elastic phase does not significantly affect its volume fraction. If the viscoelastic matrix phase is regarded as constituting 95% of the fiber, it can be considered as mechanically isotropic at all water contents. Because of the low filament volume fraction obtained, the results suggest that the microfibril is not the mechanical unit corresponding to the water unaffected phase of the two phase model.Keywords
This publication has 20 references indexed in Scilit:
- Finite Element Analysis of the Composite Fiber, Alpha KeratinTextile Research Journal, 1983
- Dynamic mechanical properties of α-keratin fibers during extensionJournal of Macromolecular Science, Part B, 1979
- Properties of the Matrix in KeratinsTextile Research Journal, 1978
- The Torsional Properties of Normal and Sulfur-Enriched Wool FibersTextile Research Journal, 1969
- Stress Relaxation of Wool Fibers in Water at Extensions in the Hookean Region over the Temperature Range 0°–90°CTextile Research Journal, 1969
- The Distribution of High- and Low-Sulfur Fractions in Alpha-KeratinTextile Research Journal, 1968
- The Stress-Strain Behavior of Dimensionally and Structurally Non-Uniform Wool Fibers in WaterTextile Research Journal, 1965
- The Mechanical Properties of Permanently Set and Cystine Reduced Wool Fibers at Various Relative Humidities and the Structure of WoolTextile Research Journal, 1963
- Elastic Moduli of Helical Polypeptide Chain StructuresBiophysical Journal, 1962
- A Two-Phase Structure for Keratin FibersTextile Research Journal, 1959