Solid State Behavior of Linear Polyesters and Polyamides |
From inside the book
Results 1-3 of 80
Page 190
Filament stress in the drawing zone was measured with a stress transducer - type
tensiometer , which was installed close by , as shown in Figure 32 ... Determine
the combination of conditions that gives the best property of the drawn filament .
Filament stress in the drawing zone was measured with a stress transducer - type
tensiometer , which was installed close by , as shown in Figure 32 ... Determine
the combination of conditions that gives the best property of the drawn filament .
Page 191
Position Marks Undrawn Filament 2 m2 2000 Cooo Drawn Filament 200 12000
Mark On Filament Heated Element Figure ... The local draw ratio is determined by
comparing the diameter of the fiber at any point in the drawing process with the ...
Position Marks Undrawn Filament 2 m2 2000 Cooo Drawn Filament 200 12000
Mark On Filament Heated Element Figure ... The local draw ratio is determined by
comparing the diameter of the fiber at any point in the drawing process with the ...
Page 198
These experiments showed that the strengths of the fully drawn fiber vary with the
first - stage block temperature . ... plots show that the optimum temperature of the
first - stage heating element is approximately 130°C with all the draw ratios .
These experiments showed that the strengths of the fully drawn fiber vary with the
first - stage block temperature . ... plots show that the optimum temperature of the
first - stage heating element is approximately 130°C with all the draw ratios .
What people are saying - Write a review
We haven't found any reviews in the usual places.
Common terms and phrases
achieved acid additional amorphous annealing Appl applied aspect average behavior block bonding changes Chem chemical composites conclusion constant crack crystallinity crystallization curves decreases deformation density depends determined diameter diffusion direction distribution domains draw ratio drawn effect element energy Equation experiments extrusion factor fatigue fiber Figure fracture fracture toughness function given groups growth healing heat higher important increasing indicated initial length linear load lower material matrix maximum measurements mechanical melt method microfibrils microstructure modulus molded molecular weight molecules nylon nylon 66 observed obtained occurs orientation peak phase Phys polyamides polycondensation polyesters Polymer Sci polymerization properties range reaction regions reported Reprinted from Ref respectively samples SAXS scattering shows solid solid state polycondensation solid-state specimen speed stage strain strength stress structure studied Table temperature tensile units values yield