VIEWING: Elastane       CHANNELS: MediaFetcher.com Home | HOT Now! | celebrities | PGA Tour Videos

search:

Recent Obscure Searches

Ultrasound scanning
Category:Opticians
Pelican (dinghy)
Talk:Symphonic black metal
Troll
John Shirreffs
List of FM radio stations in the United States by call sign (initial letters WD WF)
Molson Canadian Rocks for Toronto


Vedurukuppam
Plan 9 from Bell Labs
Image:Roxann Dawson JPG
List of fighting games
Image:Chrsyler 3 3 jpg
Supreme Court of Indiana
Traditional Burmese calendar
Vorona berivotrensis
Jay Novacek
Flevoland
Flag of Baden
Image:MA Route 70 svg
Google chrome browser
The Meatmen
Glossary of cue sports terms
85
Conall Gulban
Category:Achaea poets
Price Hill, West Virginia
List of boiling and freezing information of solvents
Eastern Anatolia Region
Francis Curzon, 5th Earl Howe
Alien Swarm logo png
Alexander Bethune
Category:Astral Media radio stations
Ukarumpa
File Transfer Protocol
0486654273
Maksym Zalizniak
EDG6

Popular

wotlk cd key
carrie underwood just a dream
paula abdul
red scarlet
download wrath of the lich king
janie hendrix
browns chicken
borean tundra map
northrend flight paths
adverb
yes men
northrend map
rob reiner
joel levinson
capital of mexico
sandisk clip 2gb mp3 player
nibiru
brad paisley
jocelyn crowley
martina mcbride
neverland ranch
trace adkins
lady antebellum
troubadour
george strait
james otto
death comes from on high
chunnel
american idol death
delilah radio
how to win friends and influence enemies
google rome
papa hummel s old fashioned pet biscuit
mccolo
trooptube
amanda henkel
best race for death knight
2012 movie
how to get to dalaran
american outlaws
billy suicide
ancient rome
the nexus wow
rodney atkins
vince gill
elementary school musical
jason aldean
campus martius of rome
jennifer nettles
earthquake tomorrow
timeline template
how do you get to northrend
to write love on her arms
jerry reed
noel redding
death knight builds
usarec manual 3 01
soulja boy
clip art
ingvar the plunderer
friday night lights season 3 episode 7
jimi hendrix
hootie and the blowfish
the great shakeout

recent Elastane video

more Elastane images

Loading...
Loading...

SEARCH THE WEB



more Elastane videos



Tina Carriwell Nursing Shirt

Tina Carriwell Nursing Shirt The Carriwell Tina Feeding top allows for discreet nursing anytime, anywhere. Lovely V-neck design. Keeps you warm & comfortable as only the front panel lifts conveniently for feeding. Material: 92% Cotton, 5% Elastane Available in Jester Red, Midnight Blue, Honey Gold http://www.2012ltd.co.uk/carriwell_uk.htm

Author: dennis2012ltd
Keywords: Tina Carriwell Nursing Shirt Feeding Breast health home beauty fashion
Added: October 23, 2008


Carriwell Kaj Long Sleeve Nursing Shirt

Carriwell Kaj Long Sleeve Nursing Shirt in Black The Carriwell Kaj Feeding Top allows for discreet nursing anytime, anywhere. Keeps you warm & comfortable as cross over design allow for convenient feeding Material: 92% Cotton, 8% Elastane Available in Burnt Orange or Black

Author: dennis2012ltd
Keywords: Carriwell Kaj Long Sleeve Nursing Shirt Maternity fashion health home beauty
Added: October 23, 2008


Carriwell Jenna Long Sleeve Nursing

Carriwell Jenna Long Sleeve Nursing Shirt in Black The Carriwell Jenna feeding top allows for discreet nursing anytime, anywhere. Keeps you warm & comfortable as only the front panel lifts conveniently for feeding. Material: 92% Cotton, 8% Elastane Also Available in Maroon or Khaki Beige http://www.2012ltd.co.uk/carriwell_uk.htm

Author: dennis2012ltd
Keywords: fashion health beauty Carriwell Jenna Long Sleeve Nursing Maternity Feeding shirt
Added: October 23, 2008


Carriwell Lace Maternity Overbelly Stretch Panty

The Carriwell Lace Maternity Overbelly Stretch Panty G-String with the stretchy lace, moulds perfectly to your tummy to provide an attractive, sensual comfortable look & feel. Fits comfortably over your tummy Silky, stretchy lace feels luxurious on your skin Soft, stunning and sensual Lace Maternity Overbelly Stretch Panty Material: 95% Cotton, 5% Elastane http://www.2012ltd.co.uk/carriwell_uk.htm

Author: dennis2012ltd
Keywords: Carriwell Lace Maternity Overbelly Stretch Panty home beauty fashion
Added: October 23, 2008


Carriwell Lace Feeding Bra

The Carriwell Lace Feeding Bra is beautifully styled and designed for your breast feeding convenience & comfort. The stretchy soft lace follows the natural curves of your body. Soft on delicate breast tissue Cross over design provides shapely support Easy access for convenient breast feeding No underwire clips or buttons Designed as a sleep set with Lace Sleeping Panties Carriwell Lace Feeding Bra Material: 92% Cotton, 8% Elastane http://www.2012ltd.co.uk/carriwell_uk.htm

Author: dennis2012ltd
Keywords: health beauty Carriwell Lace Feeding Bra maternity bra
Added: October 23, 2008



More Information About Elastane

Spandex or elastane is a synthetic fiber known for its exceptional elasticity. It is stronger and more durable than rubber, its major non-synthetic competitor. It was invented in 1959 by DuPont chemist Joseph Shivers. When first introduced it revolutionized many areas of the clothing industry.

Example of spandex
Example of spandex

"Spandex" is a generic name and not derived from the chemical name of the fiber, which most manufactured fibers are, but derived by shifting around the syllables in the word expands.[1] "Spandex" is the preferred name in North America; elsewhere it is referred to as "elastane".

The most famous brand name associated with spandex is Lycra, a trademark of Invista (formerly part of DuPont). Such is the prominence of the Lycra brand that it has become a genericised trademark in many parts of the world, used to describe any kind of spandex. Invista discourages such use, protecting its trademark vigorously.

Other spandex trademarks include Elaspan (also Invista's), Dorlastan (Asahi Kasei) and Linel (Fillattice).

Contents

Chemical composition and molecular arrangement

Spandex is a block copolymer of polyurethane and polyethylene glycol.

Spandex consists of rigid and flexible segments in the polymer chain. The flexible segments give the fiber the stretch and the rigid segments hold the chain together.[1] When force is applied, the folded flexible segments straighten out and then return to their original position when the force is removed. The proportions of flexible and rigid segments in the polymer chain determine the amount of stretch.

Physical structure of fiber

Spandex is produced as monofilament or fused multifilament yarns in a variety of deniers.[1] Monofilaments are round in cross section. Multifilaments are partly fused together at intervals and are found in fibers with deniers of 40 and above. [1] The deniers of a spandex fiber range from 20 to 4300 and are determined by what the product use will be. 20 denier spandex, for example, is used in ligthweight support hoisery, in which a large amount of stretch is necessary for the products use and durability. Coarser yarns, with a denier of 1500 to 2240 denier, have less stretch capacity and can be used for support hosiery tops, swimwear, and foundation garments.[1]

Spandex fiber production

Spandex fibers are produced in four different ways including melt extrusion, reaction spinning, solution dry spinning, and solution wet spinning. All of these methods include the initial step of reacting monomers to produce a prepolymer. Once the prepolymer is formed it is reacted further in various ways and drawn out to produce a long fiber. The solution dry spinning method is used to produce over 90% of the world's spandex fibers.[2]

Solution dry spinning

Step 1: The first step is to produce the prepolymer. This is done by mixing a macroglycol with a diisocyanate monomer. The two compounds are mixed together in a reaction vessel to produce a prepolymer. A typical ratio of glycol to diisocyanate is 1:2. [2]

Step 2: The prepolymer is further reacted with an equal amount of diamine. This reaction is know as chain extension reaction. The resulting solution is diluted with a solvent to produce the spinning solution. The solvent helps make the solution thinner and more easily handled and then can be pumped into the fiber production cell.

Step 3: The spinning solution is pumped into a cylindrical spinning cell where it is cured and converted into fibers. In this cell, the polymer solution is forced through a metal plate, called a spinneret. This causes the solution to be aligned in strands of liquid polymer. As the strands pass through the cell, they are heated in the presence of a nitrogen and solvent gas. This process causes the liquid polymer to chemically react and form solid strands. [2]

Step 4: As the fibers exit the cell, an amount of solid strands are bundled together to produce the desired thickness. Each fiber of spandex is made up of many smaller individual fibers that adhere to one another due to the natural stickiness of their surface. [2]

Step 5: The resulting fibers are then treated with a finishing agent. This can be magnesium stearate or another polymer. This process prevents the fibers sticking together and aid in textile manufacture. The fibers are then transferred through a series of rollers onto a spool.

Step 6: When the spools are filled with fiber, they are put into final packaging and shipped to textile manufacturers.

Spandex fiber characteristics

Spandex is classified as an elastomeric fiber. An elastomer is a natural or synthetic polymer that, at room temperature, can be stretched and expanded to twice its original length. After removal of the tensile load it will immediately return to its original length.[1] Along with spandex, rubber and anidex (no longer produced in the United States) are considered elastomeric fibers. Spun from a block copolymer, these fibers exploit the high crystallinity and hardness of polyurethane segments, yet remain "rubbery" due to alternating segments of polyethylene glycol.

This yields the following combination of materials properties:

  • can be stretched over 500% without breaking
  • able to be stretched repetitively and still recover original length
  • lightweight
  • abrasion resistant
  • poor strength, but stronger and more durable than rubber
  • soft, smooth, and supple
  • resistant to body oils, perspiration, lotions, and detergents
  • no static or pilling problem
  • very comfortable
  • easily dyed

Major spandex fiber uses

In clothing it usually appears as a small percentage of total material. In North America it is rare in men's cheaper clothing, but prevalent in women's. It is used more often in women's as their clothes are usually more form-fitting. It is usually mixed with a greater percentage of one other textile such as cotton, polyester, or others. This keeps the reflection of light reduced to being hardly noticeable.

Spandex in popular culture

Superheroes

In comic books, superheroes and superheroines commonly wear costumes thought to be made of spandex. However, early superhero comics predate the invention of spandex (Superman-1938, Batman-1939, Captain America-1941). Printing processes for early color comics only rendered images with distinctly separate solid blocks of color well. Overprinting and color mixing yielded inconsistent results and bad looking muddy colors.

Because spandex is skintight, as many superhero costumes appear to be drawn, and because spandex is almost exclusively made in the same bright solid colors as the early Golden Age comics, the after-the-fact assumption of spandex composition was made. The same assumption of costume composition is also made for latex / rubber garments, which are also solid in colour and skin-tight.

While spandex is frequently assumed and sometimes ackowledged to be the material in superhero costumes, it is not always the case. In Marvel Comics, for example, many superhero and supervillain costumes are made of a material called "unstable molecules", which is capable of stretching to far more than twice its length as well as having many other unique (and physically impossible, in the real world) properties. Captain America's costume is not made of an elastic material at all, but is rather chain mail or scale armor.

In Japan, spandex is the common material for costumes used in the popular Super Sentai series (known overseas as Power Rangers). The first use of the material was in 1983's Kagaku Sentai Dynaman.

'70s/'80s rock/metal

During the 1970s and 1980s, spandex leggings rose in popularity amongst many rock and heavy metal bands, particularly British NWOBHM and American glam metal bands. The main reasons for this massive, almost universal, embracement of spandex amongst rock/metal bands was due to the fact that spandex retained its stretchy, tight fitting quality, even after extended wear. Denim jeans and leather strides tended to sag and wear, while spandex did not. Also, the stretchiness of the material did not constrict musicians' movement onstage, allowing them to perform high kicks, or to rest their feet on monitors. Some of the rock/metal bands who used spandex leggings included Queen, Ratt, Van Halen, Mötley Crüe, Judas Priest, Scorpions, Iron Maiden, Saxon, Whitesnake, Bon Jovi and Twisted Sister. By the end of the 1980s and the decline of glam metal, and metal in general, with the advent of grunge, spandex fell out of fashion and many older glam bands found themselves being referred to as 'Spandex Jockeys'.

70s/80s country

While glam metal bands were getting into the spandex craze, so were many glam-oriented Country stars, especially women like Dolly Parton, Margo Smith, and Dottie West. Dottie West is probably the best-known out of any Country singer for wearing spandex outfits on stage.

See also

References

  1. ^ a b c d e f Kadolph, Sara J. Textiles.
  2. ^ a b c d "How spandex is made" from How Products Are Made

External links

© 2008 obscurevideos.com