1983, ISBN 0900739649, Volume 13, no. 1, 61
Book
The Journal of The Textile Institute, ISSN 0040-5000, 02/2019, Volume 110, Issue 2, pp. 179 - 185
Elastic structures are preferred for improving the elasticity and recovery properties of denim fabrics. With the intention of improving comfort during body...
denim | dual-core yarns | duo-core yarns | elastic yarns | core yarns | Double-core yarns | STRETCH | MATERIALS SCIENCE, TEXTILES | PERFORMANCE | Warp | Warp yarns | Statistical analysis | Elastic yarns | Mechanical properties | Elasticity | Statistical methods | Cotton | Yarn | Composition effects | Sheaths | Residential density | Weft | Fabrics | Weaving | Clothing industry | Yarns | Denim | Textile industry
denim | dual-core yarns | duo-core yarns | elastic yarns | core yarns | Double-core yarns | STRETCH | MATERIALS SCIENCE, TEXTILES | PERFORMANCE | Warp | Warp yarns | Statistical analysis | Elastic yarns | Mechanical properties | Elasticity | Statistical methods | Cotton | Yarn | Composition effects | Sheaths | Residential density | Weft | Fabrics | Weaving | Clothing industry | Yarns | Denim | Textile industry
Journal Article
Cellulose, ISSN 0969-0239, 7/2018, Volume 25, Issue 7, pp. 4239 - 4249
A facile and original method was developed to fabricate flexible conductive yarns using cotton roving and carbon nanotubes (CNTs). The CNTs were assembled to...
Electrical conductivity | Ring spinning | Sustainable Development | Durability | Cotton | Bioorganic Chemistry | Polymer Sciences | Carbon nanotube | Chemistry | Physical Chemistry | Composite yarn | Ceramics, Glass, Composites, Natural Materials | Organic Chemistry | POLYMER SCIENCE | WEARABLE PRESSURE | SUPERCAPACITORS | MATERIALS SCIENCE, TEXTILES | RAMAN-SPECTROSCOPY | CARBON NANOTUBE YARNS | FABRICS | COMPOSITES | STRAIN SENSORS | MATERIALS SCIENCE, PAPER & WOOD | FIBERS | NANOGENERATORS | TEXTILE | Cotton yarn | Usage | Carbon | Production processes | Nanotubes | Electric properties | Raman spectra | Abrasion | Scanning electron microscopy | Twisting | Carbon nanotubes | Electrical resistance | Yarn | Abrasion resistance | Electrical resistivity | Yarns
Electrical conductivity | Ring spinning | Sustainable Development | Durability | Cotton | Bioorganic Chemistry | Polymer Sciences | Carbon nanotube | Chemistry | Physical Chemistry | Composite yarn | Ceramics, Glass, Composites, Natural Materials | Organic Chemistry | POLYMER SCIENCE | WEARABLE PRESSURE | SUPERCAPACITORS | MATERIALS SCIENCE, TEXTILES | RAMAN-SPECTROSCOPY | CARBON NANOTUBE YARNS | FABRICS | COMPOSITES | STRAIN SENSORS | MATERIALS SCIENCE, PAPER & WOOD | FIBERS | NANOGENERATORS | TEXTILE | Cotton yarn | Usage | Carbon | Production processes | Nanotubes | Electric properties | Raman spectra | Abrasion | Scanning electron microscopy | Twisting | Carbon nanotubes | Electrical resistance | Yarn | Abrasion resistance | Electrical resistivity | Yarns
Journal Article
2006, ISBN 0966828984, 176
Book
Book
9.
A Brooklyn Museum handbook compiled for the Industrial art exhibition of rayon and synthetic yarns
Book
1999, 1st ed., iii, 125
Book
1993, ISBN 1870812530, Volume 24, no. 3., 49
Book
Cellulose, ISSN 0969-0239, 1/2019, Volume 26, Issue 2, pp. 1169 - 1181
Yarn supercapacitors (YSCs) are attracting considerable interest for wearable electronics and intelligent textiles due to their high flexibility and...
Polymer Sciences | Chemistry | Wearable electronics | Physical Chemistry | Sustainable Development | Yarn supercapacitor | Ceramics, Glass, Composites, Natural Materials | Conductive blended yarns | Flexibility | Bioorganic Chemistry | Polypyrrole | Organic Chemistry | POLYMER SCIENCE | ELECTRODE MATERIALS | MATERIALS SCIENCE, TEXTILES | NATURAL COTTON THREAD | ELECTRICAL-PROPERTIES | CAPACITOR | GRAPHENE | FABRICS | MATERIALS SCIENCE, PAPER & WOOD | FIBER | POLYANILINE | NANOCOMPOSITE | NANOSHEET ARRAY | Usage | Steel, Stainless | Materials | Pyrrole | Mechanical properties | Cotton yarn | Ultracapacitors | Production processes | Electric properties
Polymer Sciences | Chemistry | Wearable electronics | Physical Chemistry | Sustainable Development | Yarn supercapacitor | Ceramics, Glass, Composites, Natural Materials | Conductive blended yarns | Flexibility | Bioorganic Chemistry | Polypyrrole | Organic Chemistry | POLYMER SCIENCE | ELECTRODE MATERIALS | MATERIALS SCIENCE, TEXTILES | NATURAL COTTON THREAD | ELECTRICAL-PROPERTIES | CAPACITOR | GRAPHENE | FABRICS | MATERIALS SCIENCE, PAPER & WOOD | FIBER | POLYANILINE | NANOCOMPOSITE | NANOSHEET ARRAY | Usage | Steel, Stainless | Materials | Pyrrole | Mechanical properties | Cotton yarn | Ultracapacitors | Production processes | Electric properties
Journal Article
13.
Extra yarn
2012, 1st ed., ISBN 9780061953385, 1 v. (unpaged)
With a supply of yarn that never runs out, Annabelle knits for everyone and everything in town until an evil archduke decides he wants the yarn for himself.
Yarn | Knitting | Humorous stories
Yarn | Knitting | Humorous stories
Book
2012, Woodhead Publishing series in textiles, ISBN 0857095595, Volume no. 129, xviii, 203
Book
1925, 10
Book
Textile Research Journal, ISSN 0040-5175, 2/2011, Volume 81, Issue 3, pp. 324 - 328
This paper investigated wicking properties of cotton-acrylic rotor yarns and knitted fabrics. The effect of yarn wicking on wicking of fabric in both wale and...
single jersey fabric | rotor yarns | fabric wicking | cotton-acrylic yarn blends | Yarn wicking | FILAMENT YARNS | CAPILLARY-FLOW | MATERIALS SCIENCE, TEXTILES | BULKED YARNS | RISE | Cotton yarn | Properties | Knit fabrics | Studies | Knit goods | Yarn | Physical properties | Acrylics | Textile composites | Polymer blends | Rotors | Fabrics | Yarns | Analysis of variance | Coarsening | Textiles
single jersey fabric | rotor yarns | fabric wicking | cotton-acrylic yarn blends | Yarn wicking | FILAMENT YARNS | CAPILLARY-FLOW | MATERIALS SCIENCE, TEXTILES | BULKED YARNS | RISE | Cotton yarn | Properties | Knit fabrics | Studies | Knit goods | Yarn | Physical properties | Acrylics | Textile composites | Polymer blends | Rotors | Fabrics | Yarns | Analysis of variance | Coarsening | Textiles
Journal Article
The Journal of The Textile Institute, ISSN 0040-5000, 07/2019, Volume 110, Issue 7, pp. 980 - 988
Core-spun yarns containing Spandex have been widely used for the production of elastic textile materials. However, it has been encountered various problems not...
spandex | dual-core yarn | elastic yarn | Multicomponent yarn | core-spun yarn | PHYSICAL-PROPERTIES | STRETCH | DRAFT | MATERIALS SCIENCE, TEXTILES | PERFORMANCE | FABRICS | RATIO | PARAMETERS | DENSITY | SPUN YARNS | Sheaths | Ring spinning | Production methods | Comparative studies | Spinning machines | Yarns | Cotton | Yarn | Spinning (materials)
spandex | dual-core yarn | elastic yarn | Multicomponent yarn | core-spun yarn | PHYSICAL-PROPERTIES | STRETCH | DRAFT | MATERIALS SCIENCE, TEXTILES | PERFORMANCE | FABRICS | RATIO | PARAMETERS | DENSITY | SPUN YARNS | Sheaths | Ring spinning | Production methods | Comparative studies | Spinning machines | Yarns | Cotton | Yarn | Spinning (materials)
Journal Article
1975, Textile science and technology, ISBN 0444998705, Volume 1, 380
Book
The Journal of The Textile Institute, ISSN 0040-5000, 05/2018, Volume 109, Issue 5, pp. 577 - 584
In textile and garment industries, misarranged warp yarns of yarn-dyed fabrics disorganize the layout of fabrics and lead to poor product quality. This series...
yarn segmentation | fabric image stitching | yarn-dyed fabric | Misarranged color yarns | layout of color yarns | WEAVE PATTERN | DENSITY | INSPECTION | RECOGNITION | MATERIALS SCIENCE, TEXTILES | CLASSIFICATION | SOLID-COLOR | Warp | Computer vision | Warp yarns | Proofing | Color | Template matching | Stitching | Yarn | Image acquisition | Image segmentation | Accuracy | Lesson plans | Fabrics | Yarns | Textile industry
yarn segmentation | fabric image stitching | yarn-dyed fabric | Misarranged color yarns | layout of color yarns | WEAVE PATTERN | DENSITY | INSPECTION | RECOGNITION | MATERIALS SCIENCE, TEXTILES | CLASSIFICATION | SOLID-COLOR | Warp | Computer vision | Warp yarns | Proofing | Color | Template matching | Stitching | Yarn | Image acquisition | Image segmentation | Accuracy | Lesson plans | Fabrics | Yarns | Textile industry
Journal Article
Sensors (Switzerland), ISSN 1424-8220, 03/2014, Volume 14, Issue 3, pp. 4712 - 4730
This paper presents a study of the sensing properties exhibited by textile-based knitted strain sensors. Knitted sensors were manufactured using flat-bed...
Conductive yarn input tension | Silver-plated nylon yarn | Strain sensor | Elastomeric yarn | Intelligent textiles | Knitted sensor | Production parameters | intelligent textiles | ELECTROCHEMISTRY | CHEMISTRY, ANALYTICAL | strain sensor | CONDUCTIVE YARNS | production parameters | elastomeric yarn | INSTRUMENTS & INSTRUMENTATION | conductive yarn input tension | knitted sensor | TEXTILE | silver-plated nylon yarn | ELECTRONICS | Linearity | Wheatstone bridges | Elastomers | Sensors | Yarns | Detection | Gages | Strain
Conductive yarn input tension | Silver-plated nylon yarn | Strain sensor | Elastomeric yarn | Intelligent textiles | Knitted sensor | Production parameters | intelligent textiles | ELECTROCHEMISTRY | CHEMISTRY, ANALYTICAL | strain sensor | CONDUCTIVE YARNS | production parameters | elastomeric yarn | INSTRUMENTS & INSTRUMENTATION | conductive yarn input tension | knitted sensor | TEXTILE | silver-plated nylon yarn | ELECTRONICS | Linearity | Wheatstone bridges | Elastomers | Sensors | Yarns | Detection | Gages | Strain
Journal Article
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