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Hydrodistillation-Based Essential Oil Extraction and Soda Pulping of Spent Hemp Biomass for Sustainable Fiber Production. [PDF]
Basak M +6 more
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Identification of new QTLs for quality traits and yield using tetraploid wheat interspecific backcross inbred lines. [PDF]
Marcotuli I +4 more
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Fiber yields inSansevieria interspecific hybrids
Economic Botany, 1969Fiber yields are reported for the interspecific hybrid ‘ Florida H-13’ (Sansevieria trifasciata Prain × S. deserti 2V. E. Brown), subjected to various harvesting cycles at three locations in southern Florida. Yields of ‘Florida H-13’ are compared with those of other F1F2triploid, and backcross hybrids and the parental species, S. trifasciata.
F. D. Wilson +2 more
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Yielding of Fiber Reinforced Tresca Material
Journal of the Engineering Mechanics Division, 1972A plane stress theory of plastic failure of a composite material is formulated by considering how the plastic failure surface of the matrix is altered by the addition of an array of parallel fibers. The matrix is assumed to obey the classical Tresca maximum shear stress yield criterion.
John D. Helfinstine, Richard H. Lance
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Yield loci around fiber inclusions
Journal of the Franklin Institute, 1981Abstract An analysis of the plastic enclaves developed around the end points of rigid fiber inclusions embedded in an elastic plate is undertaken. The plate is subjected to a uniform uniaxial stress at any angle of inclination with the axis of the fiber.
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Genetic Relationship between Fiber and Sugarcane Yield Components
Crop Science, 1992Sugarcane (Saccharum spp.) fiber, the dry, water‐insoluble component of the stalk, is an important quality component because of its inverse relationship to juice extraction and milling efficiency. Sugarcane cultivars in temperate regions are enhanced with S. spontaneum L. germplasm to provide increased vigor and cold tolerance.
K. A. Gravois, S. B. Milligan
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Stress based yield/failure criteria for fiber composites
International Journal of Solids and Structures, 1997In the present work a new theory of yielding and failure is derived for fiber composite materials. The importance of this general area is underscored by the high degree of activity that has been expended over the past 30 years or so in searching for the elusive best formulation.
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A Quadratic Yield Function for Fiber-Reinforced Composites
Journal of Composite Materials, 1997A simple, 3-D yield function that is quadratic in stresses was proposed to describe the plastic behavior of fiber composites. It relaxes the two usually used assumptions that hydrostatic stress does not influence plastic deformation and that the total plastic dilatation is incompressible.
J. K. Chen, F. A. Allahdadi, C. T. Sun
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