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INDEX tensile strength

Agent Promotion index Tensile strength (MPa) Elongation at break (%) Notched Izod impact strength 0/cm)... [Pg.127]

Thickness (mm) Crystallinity degree (%) Young s modulus (GPa) Water holding capacity (g water/g cellulose) Cellulose content in the dressing (%) Relative total deformation index (%) Tensile strength (MPa)... [Pg.310]

Engineering Polymer UL Temperature Index Tensile Strength at 23T (13 X 1,000 psi (MPa) Percent Retention of Tensile Strength at ... [Pg.556]

Fig. 12. Tensile strength vs draw ratio (6) 0.42 melt index spun at 50 m /min, B, and 500 m /min, A, A 12.0 melt index spun at 100 m /min, , O and 500 m /min, , <). Open symbols = cold drawn and annealed at 140°C filled symbols = drawn at 140°C. To convert GN/m to dyne/cm, multiply by... Fig. 12. Tensile strength vs draw ratio (6) 0.42 melt index spun at 50 m /min, B, and 500 m /min, A, A 12.0 melt index spun at 100 m /min, , O and 500 m /min, , <). Open symbols = cold drawn and annealed at 140°C filled symbols = drawn at 140°C. To convert GN/m to dyne/cm, multiply by...
Material Percent neutralized Melt index at 190°C, dg/min Secant modulus, % extension, MPa Ultimate tensile strength, MPa Elongation at break, %... [Pg.405]

Surface hardness Tensile strength ties, refractive index, decom-... [Pg.114]

As for the tenacity, which describes the fiber s resistance to the action of the tensile force, the quantitative index assumed most often is the tensile strength (crj (cN/tex). For the quantitative assessment of tenacity an index of mechanical long life (t) is used, proposed by Zurkow and Abasow [46,47]. This index defines the time after which, when applying a definite tensile strength and a definite temperature, the fiber breaks. [Pg.848]

The melt flow index describes the viscosity of a solid plastic. It is the weight in grams of a polymer extruded through a defined orifice at a specified time. The melt viscosity and the melt flow index can measure the extent of polymerization. A polymer with a high melt flow index has a low melt viscosity, a lower molecular weight, and usually a lower impact tensile strength. [Pg.318]

Alloy Designation Tensile Strength 0.2% Yield Working Hardness Coeff. of Thermal Expansion Thermal Conductivity Cost Index... [Pg.459]

Mechanical properties, such as elastic modulus and yield point, that depend on crystallinity per se are not seriously affected by low to moderate doses of ionizing radiation. On the other hand, those mechanical properties that are sensitive to interlamellar activity are most dramatically affected by the low to moderate radiation doses. This is seen in the ultimate tensile strength and elongation at failure of the polyolefins. It is also reflected in the large change in melt index between 0 and 18 Mrad, which indicates formation of cross-links that increase with increasing... [Pg.98]

Just as metals can be ductile or brittle, so can organic materials. The Brittle Fracture Index is a measure of the brittleness of a material. It is a measure of the ability of a compact of material to relieve stress by plastic deformation. The Brittle Fracture Index (BFI) is determined [29,31] by comparing the tensile strength of a compact, stress concentrator) in it, o-T0, using the tensile test we have described. A hole in the center of the compact generally weakens a tablet. If a material is very brittle, theoretical considerations show that the tensile strength of a tablet with a hole in it will be about one-third that of a solid tablet. If, however, the material can relieve stress by plastic deformation, then the strength of the compact with a hole in it will approach that of a compact with no hole. The Brittle Fracture... [Pg.292]

Shear cell measurements offer several pieces of information that permit a better understanding of the material flow characteristics. Two parameters, the shear index, n, and the tensile strength, S, determined by fitting simplified shear cell data to Eq. (6), are reported in Table 2. Because of the experimental method, only a poor estimate of the tensile strength is obtained in many cases. The shear index estimate, however, is quite reliable based on the standard error of the estimate shown in parenthesis in Table 2. The shear index is a simple measure of the flowability of a material and is used here for comparison purposes because it is reasonably reliable [50] and easy to determine. The effective angle of internal... [Pg.302]

Components (phr) Oxygen Index (%) Maximum Smokeb Density (Dm) Tensile Strength (kq/irm2)... [Pg.173]

PVA has also been extensively used for immobilization of biocatalysts in a membranous form. As compared to PAAm, PVA is more hydrophilic and having adhesive property with better tensile strength in dry conditions. But it has high swelling index and dissolves readily in water when not cross-linked. PVA can be cross-linked using a variety of reagents including... [Pg.169]

Specific tensile strength (MPa/density) Tensile strength after 1000 h at 260°C (MPa) Oxygen index (%)... [Pg.599]


See other pages where INDEX tensile strength is mentioned: [Pg.23]    [Pg.139]    [Pg.2113]    [Pg.2099]    [Pg.459]    [Pg.315]    [Pg.23]    [Pg.139]    [Pg.2113]    [Pg.2099]    [Pg.459]    [Pg.315]    [Pg.327]    [Pg.404]    [Pg.235]    [Pg.306]    [Pg.534]    [Pg.279]    [Pg.227]    [Pg.254]    [Pg.835]    [Pg.288]    [Pg.100]    [Pg.417]    [Pg.303]    [Pg.181]    [Pg.171]    [Pg.183]    [Pg.300]    [Pg.358]    [Pg.96]    [Pg.16]    [Pg.64]    [Pg.300]    [Pg.305]    [Pg.305]    [Pg.350]    [Pg.481]    [Pg.6]    [Pg.330]    [Pg.137]   
See also in sourсe #XX -- [ Pg.40 ]




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INDEX strengths

Tensil strength

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