Published Online: 2015-6-26
Published in Print: 2015-6-1
© Autex Research Journal
Artikel in diesem Heft
- Preparation Of Melt Spun Electroconductive Fine Fibres Containing Carbon Nanotubes
- Digieye Application In Cotton Colour Measurement
- Smart Woven Fabrics With Portable And Wearable Vibrating Electronics
- Effect Of Dyeing On Wrinkle Properties Of Cotton Cross-Linked By Butane Tetracarboxylic Acid (BTCA) In Presence Of Titanium Dioxide (TiO2) Nanoparticles
- Flex Fatigue Behavior Of Plastic Optical Fibers With Low Bending Cycles
- Effect Of Fabric Layers On Whiteness And Yellowness Indices Of Some Polyester Fabrics Woven With Different Constructional Parameters
- The Effect Of Sodium Alginate Concentration On The Rheological Parameters Of Spinning Solutions
- Mechanical Properties Of 3D-Structure Composites Based On Warp-Knitted Spacer Fabrics
- Properties Of Viscose Vortex Yarns Depending On Technological Parameters Of Spinning
- Shield Effect Of Functional Interlining Fabric
- Development Of 3D Woven Fabric Based Pressure Switch
Schlagwörter für diesen Artikel
Biodegradable polymer;
alginate fibres;
rheological parameters
Creative Commons
BY-NC-ND 3.0
Artikel in diesem Heft
- Preparation Of Melt Spun Electroconductive Fine Fibres Containing Carbon Nanotubes
- Digieye Application In Cotton Colour Measurement
- Smart Woven Fabrics With Portable And Wearable Vibrating Electronics
- Effect Of Dyeing On Wrinkle Properties Of Cotton Cross-Linked By Butane Tetracarboxylic Acid (BTCA) In Presence Of Titanium Dioxide (TiO2) Nanoparticles
- Flex Fatigue Behavior Of Plastic Optical Fibers With Low Bending Cycles
- Effect Of Fabric Layers On Whiteness And Yellowness Indices Of Some Polyester Fabrics Woven With Different Constructional Parameters
- The Effect Of Sodium Alginate Concentration On The Rheological Parameters Of Spinning Solutions
- Mechanical Properties Of 3D-Structure Composites Based On Warp-Knitted Spacer Fabrics
- Properties Of Viscose Vortex Yarns Depending On Technological Parameters Of Spinning
- Shield Effect Of Functional Interlining Fabric
- Development Of 3D Woven Fabric Based Pressure Switch