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{{Short description|Synthetic fibre known for its elasticity}}{{Redirect|Lycra|the Lycra company|Shandong Ruyi}} | |||
'''Spandex''' or '''elastane''' is a ] known for its exceptional ] (stretchability). It is stronger and more durable than ], its major ] competitor. It was ] in ] by ], and when first introduced it revolutionized many areas of the ] ]. | |||
{{Use mdy dates|date=December 2021}} | |||
] comprising a ], ] and ].]] | |||
Spandex is the preferred name in ], while elastane is most often used elsewhere. A well-known trademark for spandex or elastane is ]'s brand name '''Lycra'''; another trademark (also INVISTA's) is '''Elaspan'''. | |||
'''Spandex''', '''Lycra''', or '''elastane''' is a ] known for its exceptional ]. It is a ]-] ] that was invented in 1958 by chemist ] at ].<ref name=":5">{{cite book |last=Teegarden |first=David M. |year=2004 |url=https://books.google.com/books?id=0qFQ5OuKoy8C&dq=spandex+Shivers&pg=PA149 |title=Polymer Chemistry: Introduction to an Indispensable Science |publisher=NSTA Press |page=149 |isbn=9780873552219}}</ref><ref name=":6">{{cite book |year=2016 |url=https://books.google.com/books?id=H17UDAAAQBAJ&dq=spandex+Shivers&pg=PT227 |title=TIME-LIFE American Inventions: Big Ideas That Changed Modern Life |publisher=Time-Life Books |isbn=9781683306313}}</ref><ref name=":7">{{cite book |last=Moskowitz |first=Sanford L. |year=2016 |url=https://books.google.com/books?id=2STRDAAAQBAJ&dq=spandex+Shivers&pg=PA75 |title=Advanced Materials Innovation: Managing Global Technology in the 21st Century |publisher=Wiley |isbn=9780470508923}}</ref> | |||
==Spandex fiber characteristics== | |||
] | |||
==Name== | |||
Spun from a ], these fibers exploit the high ]linity and hardness of ] segments, yet remain "rubbery" due to alternating segments of ]. This yields the following combination of materials properties: | |||
The name ''spandex'', which is an ] of the word "expands",<ref>{{cite book |last=Kadolph |first=Sara J. |year=2010 |title=Textiles |publisher=Pearson |isbn=9780135007594}}</ref> is the preferred name in ]. In ], it is referred to by variants of ''elastane''.{{efn|Including {{lang|fr|élasthanne}} (France), {{lang|de|Elastan}} (Germany, Sweden), {{lang|es|elastano}} (Spain), {{lang|it|elastam}} (Italy), and {{lang|nl|elastaan}} (Netherlands)}} It is primarily known as ''Lycra'' in the UK, Ireland, Portugal, Spain, Latin America, Australia, and New Zealand. | |||
Brand names for spandex include '''Lycra''' (made by The Lycra Company, previously a division of ]), '''Elaspan''' (The Lycra Company), '''Acepora''' (]), '''Creora''' (]), '''INVIYA''' (]), '''ROICA''' and '''Dorlastan''' (]), '''Linel''' (Fillattice),<ref>{{Cite web |url=https://www.textileworld.com/textile-world/features/2000/03/fillattice-stretches-its-reach-globally/ |title=Fillattice Stretches Its Reach Globally |work=Textile World |date=2000-03-01 |access-date=2021-12-22}}</ref> and '''ESPA''' (]). | |||
* 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 problems | |||
==Production== | |||
==Major spandex fiber uses== | |||
{{multiple image | |||
| align = left | |||
| direction = horizontal | |||
| image1 = Spandex yarn in black color.jpg | |||
| width1 = 150 | |||
| caption1 = Black dyed Spandex yarn. | |||
}} | |||
Unlike many other synthetic fibers, spandex cannot be melt-processed because the polymer degrades upon melting. Spandex fibers are produced by several ] technologies. Typically, a concentrated solution of the polymer is drawn through spinnerets at temperatures where the solvent evaporates.<ref name=UllFib>{{cite book |doi=10.1002/14356007.o10_o02 |chapter=Fibers, 6. Polyurethane Fibers |title=Ullmann's Encyclopedia of Industrial Chemistry |year=2011 |last1=Wolf |first1=Karl-Heinz |last2=Kausch |first2=Michael |last3=Schröer |first3=Hans |last4=Schweizer |first4=Michael |isbn=978-3527306732 }}</ref> | |||
* ] and clothing articles where stretch is desired, generally for comfort and fit, such as: | |||
** athletic, aerobic, and exercise apparel | |||
** ] | |||
** ]s/bathing suits | |||
** ] | |||
** ] straps and bra side panels | |||
** ] pants | |||
** ] | |||
** ] | |||
** ] | |||
** ]s | |||
** belts | |||
* ] garments such as: | |||
** surgical hose | |||
** support hose | |||
** ] pants | |||
** foundation garments | |||
* Shaped garments such as bra cups | |||
* | |||
] | |||
==Production== | |||
Spandex is mainly composed of a polyurea derived from the reaction of a ] and a ]. Two classes of spandex are defined by the "macrodiols". One class of macrodiols is the ] produced from ] (i.e. ]). Another class of diols, the so-called ester diols, are oligomers derived from condensation of ] and glycols. Spandex produced from the ester diols is more resilient photochemically and to chlorinated water. Almost always, the diisocyanate is ]. The key linking reaction is formation or the urea (aka urethane): | |||
The ] definition for spandex fiber is "A ]d fiber in which the fiber-forming substance is a long chain ] ] comprised of at least 85 percent of a segmented ]". | |||
:{{chem2|ROH + OCNR' -> ROC(O)NHR}} | |||
The polyurea is usually treated with various diamines, which function as ]s. | |||
== Function == | |||
First U.S. commercial spandex fiber production: 1959, ] | |||
The exceptional elasticity of spandex fibers increases the clothing's '''pressure comfort''', enhancing the ease of body movements. Pressure comfort is the response towards clothing by the human body's pressure receptors (]s present in skin sensory cells). The sensation response is affected mainly by the stretch, snug, loose, heavy, lightweight, soft, and stiff structure of the material.<ref>{{Cite book |last=Song |first=Guowen |title=Improving Comfort in Clothing |publisher=Woodhead Publishing |year=2011 |isbn=9780857090645 |pages=25,235,432}}</ref> | |||
The elasticity and strength (stretching up to five times its length) of spandex has been incorporated into a wide range of garments, especially in ]. A benefit of spandex is its significant strength and elasticity and its ability to return to the original shape after stretching and faster drying than ordinary fabrics. For clothing, spandex is usually mixed with ] or ], and accounts for a small percentage of the final fabric, which therefore retains most of the look and feel of the other fibers. An estimated 80% of clothing sold in the ] contained spandex in 2010.<ref>{{cite news |url=https://www.npr.org/templates/transcript/transcript.php?storyId=143003539 |title=Spandex Stretches To Meet U.S. Waistlines |author=Marisa Penaloza |date=2011-12-11 |access-date=2012-01-17 |agency=NPR}}</ref> | |||
Current U.S. spandex fiber producers: ]; ] Corporation; | |||
== |
==Gallery== | ||
<gallery caption="Stretch material used in various sports" mode="packed" heights="200px"> | |||
Athlete.png|A ] wearing ]s | |||
Hurdler.jpg|A ] ] in a uniform | |||
</gallery> | |||
== History == | |||
In ]s, ]es and ]s commonly wear costumes made of spandex. | |||
The easy condensation of diols and diisocyanates was recognized in the 1930s as the result of work by ].<ref name=UllFib/> Fibers suitable for replacing nylon were not created from urethanes, but instead this theme led to a family of specialized elastic fabrics. | |||
In the ] era, ], formed in 1952, became the most profitable division of DuPont, dominating the ] market worldwide.<ref name=":1">{{Citation |last=O'Connor |first=Kaori |title=Producing Fashion |pages=207–228 |year=2008 |chapter=CHAPTER ELEVEN. The Body and the Brand: How Lycra Shaped America |publisher=University of Pennsylvania Press |doi=10.9783/9780812206050.207 |isbn=9780812206050}}</ref> At this time, women began to emerge as a significant group of consumers because of their need for underwear and ].<ref name=":1" /> After conducting ] to find out what women wanted from textiles, DuPont began developing fibers to meet such needs—including a better fiber for women's ], which were commonly made of rubber at the time. | |||
==See also== | |||
* ] | |||
In the early 1950s chemist ] modified ] polyester, producing an elastic fiber that could withstand high temperatures.<ref name=":02">{{Cite web |date=August 1998 |title=Joseph c. Shivers to Receive The Olney Medal |url=http://www.aatcc.org/awards/OlneyShivers.pdf |url-status=dead |archive-url=https://web.archive.org/web/20131203014041/http://www.aatcc.org/awards/OlneyShivers.pdf |archive-date=2013-12-03 |access-date=2018-11-26 |publisher=American Association of Textile Chemists and Colorists}}</ref> <!--Determined to find a fiber to replace rubber in garments, after nearly a decade of research, Shivers perfected the fiber in 1958 at ]'s Benger Laboratory in ].<ref name=":0">{{cite patent |country=US |number=3023192 |status=patent |title=Segmented copolyetherester elastomers |gdate=1962-02-27 |fdate=1958-05-29 |inventor=Jr Joseph Clois Shivers |assign1=EI Du Pont de Nemours and Co.}}</ref>--><ref name=":4">{{cite book |last1=Flynn |first1=Elizabeth |last2=Patel |first2=Sarah |year=2016 |url=https://books.google.com/books?id=U3L7CwAAQBAJ&dq=spandex+inventor&pg=PA86 |title=The Really Useful Primary Design and Technology Book: Subject Knowledge and Lesson Ideas |location=New York |publisher=Routledge |page=86 |isbn=9781317402565}}</ref><ref name=":5" /><ref name=":6" /><ref name=":7" /> | |||
* ] | |||
=== Lycra brand === | |||
To distinguish its brand of spandex fiber, DuPont chose the ] ''Lycra'' (originally called ''Fiber K'').<ref>{{Cite journal |date=February 15, 1999 |title=What's That Stuff? – Spandex |first=Marc |last=Reisch |url=https://pubs.acs.org/cen/whatstuff/stuff/7707scitek4.html |journal=Chemical & Engineering News |volume=77 |issue=7 |doi=10.1021/cen-v077n007.p070 |access-date=2018-12-06}}</ref> DuPont launched an extensive publicity campaign for its Lycra brand, taking advertisements and full-page ads in top women's magazines<!-- such as '']'', '']'', '']'', '']'', '']'', '']'', and '']''-->.<ref name=":1" /> ] helped catapult the brand on and off-screen during this time; models and actresses like ] and ] followed Hepburn's aesthetic by posing in Lycra clothing for photo shoots and magazine covers.<ref>{{Cite web |last=Clark |first=Meaghan |title=What Came First: The Yoga Pant Or The Skinny Jean? |url=https://www.refinery29.com/en-us/yoga-pants-skinny-jeans-trend-history |access-date=2018-12-11 |website=Refinery29 |publisher=Vice Media |language=en}}</ref> | |||
By the mid-1970s, with the emergence of the ], girdle sales began to drop as they came to be associated with anti-independence and emblematic of an era that was quickly passing away.<ref name=":1" /> In response, DuPont marketed Lycra as the ] ] movement emerged in the 1970s.<ref name=":1" /> The association of Lycra with fitness had been established at the ], when the French ski team wore Lycra garments.<ref name=":2">{{cite news |work=The Sydney Morning Herald |title=Lycra: a brief history |url=https://www.youtube.com/watch?v=vvwIlHUIqAU |archive-url=https://ghostarchive.org/varchive/youtube/20211117/vvwIlHUIqAU |archive-date=2021-11-17 |url-status=live |access-date=2018-12-11}}{{cbignore}}</ref> The fiber came to be especially popular in ] worn by cyclists.<ref name=":2" /> | |||
By the 1980s, the fitness trend had reached its height in popularity and fashionistas began wearing shorts on the street.<ref name=":3">{{Cite web |title=Spandex – Fashion, Costume, and Culture: Clothing, Headwear, Body Decorations, and Footwear through the Ages |url=http://www.fashionencyclopedia.com/fashion_costume_culture/Modern-World-1980-2003/Spandex.html |access-date=2018-12-11 |website=Encyclopedia of Fashion}}</ref> Spandex proved such a popular fiber in the garment industry that, by 1987, DuPont had trouble meeting worldwide demand. In the 1990s a variety of other items made with spandex proved popular, including a successful line of ] sold under the trade name ''Bodyslimmers''. As the decade progressed, shirts, pants, dresses, and even shoes were being made with spandex blends, and mass-market retailers like ] were even using it for menswear.<ref name=":3" /> | |||
In 2019, control of the Lycra Company was sold by ] to ].<ref name="Kane Wu 2020 v287">{{cite web | last=Kane Wu | first=Scott Murdoch | title='China's LVMH' Shandong Ruyi resists Lycra sale in favour of IPO amid debt crisis: sources | website=Reuters | date=2020-08-06 | url=https://www.reuters.com/article/us-shandong-ruyi-lycra-idUSKCN2521CY/ | access-date=2024-04-10}}</ref> | |||
== Environmental impact == | |||
Most clothes containing spandex are difficult to recycle.<ref>{{Cite journal |author1=Yunjie Yin |author2=Donggang Yao |author3=Chaoxia Wang |author4=Youjiang Wang |year=2014 |title=Removal of spandex from nylon/spandex blended fabrics by selective polymer degradation |journal=Textile Research Journal |publisher=Textile Research Journal, Volume 84, Issue 1, January 2014 |volume=84 |pages=16–27 |doi=10.1177/0040517513487790 |s2cid=43014321}}</ref> Even a 5% inclusion of spandex will render the fabric incompatible with most mechanical recycling machines. | |||
==Notes== | |||
{{Notelist}} | |||
==References== | |||
{{Reflist}} | |||
==External links== | ==External links== | ||
{{Commons category|Spandex}} | |||
* – Company website | |||
* ''Chemical and Engineering News'' | |||
* – Company website | |||
{{Fibers}} | |||
{{Fabric}} | |||
{{Clothing materials and parts}} | |||
] | |||
] | |||
] | ] | ||
] | ] | ||
] | |||
] | |||
] | |||
] | |||
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Latest revision as of 01:34, 30 November 2024
Synthetic fibre known for its elasticity"Lycra" redirects here. For the Lycra company, see Shandong Ruyi.
Spandex, Lycra, or elastane is a synthetic fiber known for its exceptional elasticity. It is a polyether-polyurea copolymer that was invented in 1958 by chemist Joseph Shivers at DuPont.
Name
The name spandex, which is an anagram of the word "expands", is the preferred name in North America. In continental Europe, it is referred to by variants of elastane. It is primarily known as Lycra in the UK, Ireland, Portugal, Spain, Latin America, Australia, and New Zealand.
Brand names for spandex include Lycra (made by The Lycra Company, previously a division of DuPont Textiles and Interiors), Elaspan (The Lycra Company), Acepora (Taekwang Group), Creora (Hyosung), INVIYA (Indorama Corporation), ROICA and Dorlastan (Asahi Kasei), Linel (Fillattice), and ESPA (Toyobo).
Production
Black dyed Spandex yarn.Unlike many other synthetic fibers, spandex cannot be melt-processed because the polymer degrades upon melting. Spandex fibers are produced by several spinning technologies. Typically, a concentrated solution of the polymer is drawn through spinnerets at temperatures where the solvent evaporates.
Spandex is mainly composed of a polyurea derived from the reaction of a diol and a diisocyanate. Two classes of spandex are defined by the "macrodiols". One class of macrodiols is the oligomer produced from tetrahydrofuran (i.e. polytetrahydrofuran). Another class of diols, the so-called ester diols, are oligomers derived from condensation of adipic acid and glycols. Spandex produced from the ester diols is more resilient photochemically and to chlorinated water. Almost always, the diisocyanate is methylenebis(phenyl isocyanate). The key linking reaction is formation or the urea (aka urethane):
- ROH + OCNR' → ROC(O)NHR
The polyurea is usually treated with various diamines, which function as chain extenders.
Function
The exceptional elasticity of spandex fibers increases the clothing's pressure comfort, enhancing the ease of body movements. Pressure comfort is the response towards clothing by the human body's pressure receptors (mechanoreceptors present in skin sensory cells). The sensation response is affected mainly by the stretch, snug, loose, heavy, lightweight, soft, and stiff structure of the material.
The elasticity and strength (stretching up to five times its length) of spandex has been incorporated into a wide range of garments, especially in skin-tight garments. A benefit of spandex is its significant strength and elasticity and its ability to return to the original shape after stretching and faster drying than ordinary fabrics. For clothing, spandex is usually mixed with cotton or polyester, and accounts for a small percentage of the final fabric, which therefore retains most of the look and feel of the other fibers. An estimated 80% of clothing sold in the United States contained spandex in 2010.
Gallery
- Stretch material used in various sports
- A road cyclist wearing compression garments
- A United States Air Force Academy hurdler in a uniform
History
The easy condensation of diols and diisocyanates was recognized in the 1930s as the result of work by Otto Bayer. Fibers suitable for replacing nylon were not created from urethanes, but instead this theme led to a family of specialized elastic fabrics.
In the post-World War II era, DuPont Textiles Fibers Department, formed in 1952, became the most profitable division of DuPont, dominating the synthetic fiber market worldwide. At this time, women began to emerge as a significant group of consumers because of their need for underwear and hosiery. After conducting market research to find out what women wanted from textiles, DuPont began developing fibers to meet such needs—including a better fiber for women's girdles, which were commonly made of rubber at the time.
In the early 1950s chemist Joseph C. Shivers modified Dacron polyester, producing an elastic fiber that could withstand high temperatures.
Lycra brand
To distinguish its brand of spandex fiber, DuPont chose the trade name Lycra (originally called Fiber K). DuPont launched an extensive publicity campaign for its Lycra brand, taking advertisements and full-page ads in top women's magazines. Audrey Hepburn helped catapult the brand on and off-screen during this time; models and actresses like Joan Collins and Ann-Margret followed Hepburn's aesthetic by posing in Lycra clothing for photo shoots and magazine covers.
By the mid-1970s, with the emergence of the women's liberation movement, girdle sales began to drop as they came to be associated with anti-independence and emblematic of an era that was quickly passing away. In response, DuPont marketed Lycra as the aerobic fitness movement emerged in the 1970s. The association of Lycra with fitness had been established at the 1968 Winter Olympic Games, when the French ski team wore Lycra garments. The fiber came to be especially popular in mid-thigh-length shorts worn by cyclists.
By the 1980s, the fitness trend had reached its height in popularity and fashionistas began wearing shorts on the street. Spandex proved such a popular fiber in the garment industry that, by 1987, DuPont had trouble meeting worldwide demand. In the 1990s a variety of other items made with spandex proved popular, including a successful line of body-shaping foundation garments sold under the trade name Bodyslimmers. As the decade progressed, shirts, pants, dresses, and even shoes were being made with spandex blends, and mass-market retailers like Banana Republic were even using it for menswear.
In 2019, control of the Lycra Company was sold by Koch Industries to Shandong Ruyi.
Environmental impact
Most clothes containing spandex are difficult to recycle. Even a 5% inclusion of spandex will render the fabric incompatible with most mechanical recycling machines.
Notes
- Including élasthanne (France), Elastan (Germany, Sweden), elastano (Spain), elastam (Italy), and elastaan (Netherlands)
References
- ^ Teegarden, David M. (2004). Polymer Chemistry: Introduction to an Indispensable Science. NSTA Press. p. 149. ISBN 9780873552219.
- ^ TIME-LIFE American Inventions: Big Ideas That Changed Modern Life. Time-Life Books. 2016. ISBN 9781683306313.
- ^ Moskowitz, Sanford L. (2016). Advanced Materials Innovation: Managing Global Technology in the 21st Century. Wiley. ISBN 9780470508923.
- Kadolph, Sara J. (2010). Textiles. Pearson. ISBN 9780135007594.
- "Fillattice Stretches Its Reach Globally". Textile World. March 1, 2000. Retrieved December 22, 2021.
- ^ Wolf, Karl-Heinz; Kausch, Michael; Schröer, Hans; Schweizer, Michael (2011). "Fibers, 6. Polyurethane Fibers". Ullmann's Encyclopedia of Industrial Chemistry. doi:10.1002/14356007.o10_o02. ISBN 978-3527306732.
- Song, Guowen (2011). Improving Comfort in Clothing. Woodhead Publishing. pp. 25, 235, 432. ISBN 9780857090645.
- Marisa Penaloza (December 11, 2011). "Spandex Stretches To Meet U.S. Waistlines". NPR. Retrieved January 17, 2012.
- ^ O'Connor, Kaori (2008), "CHAPTER ELEVEN. The Body and the Brand: How Lycra Shaped America", Producing Fashion, University of Pennsylvania Press, pp. 207–228, doi:10.9783/9780812206050.207, ISBN 9780812206050
- "Joseph c. Shivers to Receive The Olney Medal" (PDF). American Association of Textile Chemists and Colorists. August 1998. Archived from the original (PDF) on December 3, 2013. Retrieved November 26, 2018.
- Flynn, Elizabeth; Patel, Sarah (2016). The Really Useful Primary Design and Technology Book: Subject Knowledge and Lesson Ideas. New York: Routledge. p. 86. ISBN 9781317402565.
- Reisch, Marc (February 15, 1999). "What's That Stuff? – Spandex". Chemical & Engineering News. 77 (7). doi:10.1021/cen-v077n007.p070. Retrieved December 6, 2018.
- Clark, Meaghan. "What Came First: The Yoga Pant Or The Skinny Jean?". Refinery29. Vice Media. Retrieved December 11, 2018.
- ^ "Lycra: a brief history". The Sydney Morning Herald. Archived from the original on November 17, 2021. Retrieved December 11, 2018.
- ^ "Spandex – Fashion, Costume, and Culture: Clothing, Headwear, Body Decorations, and Footwear through the Ages". Encyclopedia of Fashion. Retrieved December 11, 2018.
- Kane Wu, Scott Murdoch (August 6, 2020). "'China's LVMH' Shandong Ruyi resists Lycra sale in favour of IPO amid debt crisis: sources". Reuters. Retrieved April 10, 2024.
- Yunjie Yin; Donggang Yao; Chaoxia Wang; Youjiang Wang (2014). "Removal of spandex from nylon/spandex blended fabrics by selective polymer degradation". Textile Research Journal. 84. Textile Research Journal, Volume 84, Issue 1, January 2014: 16–27. doi:10.1177/0040517513487790. S2CID 43014321.
External links
- "What's That Stuff: Spandex" Chemical and Engineering News
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