Share to: share facebook share twitter share wa share telegram print page

Non-Newtonian fluid

A non-Newtonian fluid is a fluid that does not follow Newton's law of viscosity, that is, it has variable viscosity dependent on stress. In particular, the viscosity of non-Newtonian fluids can change when subjected to force. Ketchup, for example, becomes runnier when shaken and is thus a non-Newtonian fluid. Many salt solutions and molten polymers are non-Newtonian fluids, as are many commonly found substances such as custard,[1] toothpaste, starch suspensions, corn starch, paint, blood, melted butter, and shampoo.

Most commonly, the viscosity (the gradual deformation by shear or tensile stresses) of non-Newtonian fluids is dependent on shear rate or shear rate history. Some non-Newtonian fluids with shear-independent viscosity, however, still exhibit normal stress-differences or other non-Newtonian behavior. In a Newtonian fluid, the relation between the shear stress and the shear rate is linear, passing through the origin, the constant of proportionality being the coefficient of viscosity. In a non-Newtonian fluid, the relation between the shear stress and the shear rate is different. The fluid can even exhibit time-dependent viscosity. Therefore, a constant coefficient of viscosity cannot be defined.

Although the concept of viscosity is commonly used in fluid mechanics to characterize the shear properties of a fluid, it can be inadequate to describe non-Newtonian fluids. They are best studied through several other rheological properties that relate stress and strain rate tensors under many different flow conditions—such as oscillatory shear or extensional flow—which are measured using different devices or rheometers. The properties are better studied using tensor-valued constitutive equations, which are common in the field of continuum mechanics.

Types of non-Newtonian behavior

Summary

Classification of fluids with shear stress as a function of shear rate.
Comparison of non-Newtonian, Newtonian, and viscoelastic properties
Viscoelastic Kelvin material, Maxwell material "Parallel" linear combination of elastic and viscous effects[2] Some lubricants, whipped cream, Silly Putty
Time-dependent viscosity Rheopectic Apparent viscosity increases with duration of stress Synovial fluid, printer ink, gypsum paste
Thixotropic Apparent viscosity decreases with duration of stress[2] Yogurt, peanut butter, xanthan gum solutions, aqueous iron oxide gels, gelatin gels, pectin gels, hydrogenated castor oil, some clays (including bentonite, and montmorillonite), carbon black suspension in molten tire rubber, some drilling muds, many paints, many floc suspensions, many colloidal suspensions
Non-Newtonian Viscosity Shear thickening (dilatant) Apparent viscosity increases with increased stress[3] Suspensions of corn starch in water (oobleck)
Shear thinning (pseudoplastic) Apparent viscosity decreases with increased stress[4][5] Nail polish, whipped cream, ketchup, molasses, syrups, paper pulp in water, latex paint, ice, blood, some silicone oils, some silicone coatings, sand in water
Generalized Newtonian fluids Viscosity is function of the shear strain rate.
Stress depends on normal and shear strain rates and also the pressure applied on it
Blood plasma, custard, water

Shear thickening fluid

The viscosity of a shear thickening – i.e. dilatant – fluid appears to increase when the shear rate increases. Corn starch suspended in water ("oobleck", see below) is a common example: when stirred slowly it looks milky, when stirred vigorously it feels like a very viscous liquid.

Shear thinning fluid

Paint is a non-newtonian fluid. A flat surface covered with white paint is oriented vertically (before taking the picture the flat surface was horizontal, placed on a table). The fluid starts dripping down the surface but, because of its non-newtonian nature, it is subjected to stress due to the gravitational acceleration. Therefore, instead of slipping along the surface, it forms very large and very dense droplets with limited dripping.

A familiar example of the opposite, a shear thinning fluid, or pseudoplastic fluid, is wall paint: The paint should flow readily off the brush when it is being applied to a surface but not drip excessively. Note that all thixotropic fluids are extremely shear thinning, but they are significantly time dependent, whereas the colloidal "shear thinning" fluids respond instantaneously to changes in shear rate. Thus, to avoid confusion, the latter classification is more clearly termed pseudoplastic.

Another example of a shear thinning fluid is blood. This application is highly favoured within the body, as it allows the viscosity of blood to decrease with increased shear strain rate.

Bingham plastic

Fluids that have a linear shear stress/shear strain relationship but require a finite yield stress before they begin to flow (the plot of shear stress against shear strain does not pass through the origin) are called Bingham plastics. Several examples are clay suspensions, drilling mud, toothpaste, mayonnaise, chocolate, and mustard. The surface of a Bingham plastic can hold peaks when it is still. By contrast Newtonian fluids have flat featureless surfaces when still.

Rheopectic or anti-thixotropic

There are also fluids whose strain rate is a function of time. Fluids that require a gradually increasing shear stress to maintain a constant strain rate are referred to as rheopectic. An opposite case of this is a fluid that thins out with time and requires a decreasing stress to maintain a constant strain rate (thixotropic).

Examples

Many common substances exhibit non-Newtonian flows. These include:[6]

Oobleck

Demonstration of a non-Newtonian fluid at Universum in Mexico City
Oobleck on a subwoofer. Applying force to oobleck, by sound waves in this case, makes the non-Newtonian fluid thicken.[7]

An inexpensive, non-toxic example of a non-Newtonian fluid is a suspension of starch (e.g., cornstarch/cornflour) in water, sometimes called "oobleck", "ooze", or "magic mud" (1 part of water to 1.5–2 parts of corn starch).[8][9][10] The name "oobleck" is derived from the Dr. Seuss book Bartholomew and the Oobleck.[8]

Because of its dilatant properties, oobleck is often used in demonstrations that exhibit its unusual behavior. A person may walk on a large tub of oobleck without sinking due to its shear thickening properties, as long as the individual moves quickly enough to provide enough force with each step to cause the thickening. Also, if oobleck is placed on a large subwoofer driven at a sufficiently high volume, it will thicken and form standing waves in response to low frequency sound waves from the speaker. If a person were to punch or hit oobleck, it would thicken and act like a solid. After the blow, the oobleck will go back to its thin liquid-like state.

Flubber (slime)

Slime flows under low stresses but breaks under higher stresses

Flubber, also commonly known as slime, is a non-Newtonian fluid, easily made from polyvinyl alcohol–based glues (such as white "school" glue) and borax. It flows under low stresses but breaks under higher stresses and pressures. This combination of fluid-like and solid-like properties makes it a Maxwell fluid. Its behaviour can also be described as being viscoplastic or gelatinous.[11]

Chilled caramel topping

Another example of non-Newtonian fluid flow is chilled caramel ice cream topping (so long as it incorporates hydrocolloids such as carrageenan and gellan gum). The sudden application of force—by stabbing the surface with a finger, for example, or rapidly inverting the container holding it—causes the fluid to behave like a solid rather than a liquid. This is the "shear thickening" property of this non-Newtonian fluid. More gentle treatment, such as slowly inserting a spoon, will leave it in its liquid state. Trying to jerk the spoon back out again, however, will trigger the return of the temporary solid state.[12]

Silly Putty

Silly Putty is a silicone polymer based suspension that will flow, bounce, or break, depending on strain rate.

Plant resin

Plant resin is a viscoelastic solid polymer. When left in a container, it will flow slowly as a liquid to conform to the contours of its container. If struck with greater force, however, it will shatter as a solid.

Quicksand

Quicksand is a shear thinning non-Newtonian colloid that gains viscosity at rest. Quicksand's non-Newtonian properties can be observed when it experiences a slight shock (for example, when someone walks on it or agitates it with a stick), shifting between its gel and sol phase and seemingly liquefying, causing objects on the surface of the quicksand to sink.

Ketchup

Ketchup is a shear thinning fluid.[3][13] Shear thinning means that the fluid viscosity decreases with increasing shear stress. In other words, fluid motion is initially difficult at slow rates of deformation, but will flow more freely at high rates. Shaking an inverted bottle of ketchup can cause it to transition to a lower viscosity through shear thinning, making it easier to pour from the bottle.

Dry granular flows

Under certain circumstances, flows of granular materials can be modelled as a continuum, for example using the μ(I) rheology. Such continuum models tend to be non-Newtonian, since the apparent viscosity of granular flows increases with pressure and decreases with shear rate. The main difference is the shearing stress and rate of shear.

See also

References

  1. ^ Ouellette, Jennifer (2013). "An-Ti-Ci-Pa-Tion: The Physics of Dripping Honey". Scientific American.
  2. ^ a b Tropea, Cameron; Yarin, Alexander L.; Foss, John F. (2007). Springer handbook of experimental fluid mechanics. Springer. pp. 661, 676. ISBN 978-3-540-25141-5.
  3. ^ a b Garay, Paul N. (1996). Pump Application Desk Book (3rd ed.). Prentice Hall. p. 358. ISBN 978-0-88173-231-3.
  4. ^ Rao, M. A. (2007). Rheology of Fluid and Semisolid Foods: Principles and Applications (2nd ed.). Springer. p. 8. ISBN 978-0-387-70929-1.
  5. ^ Schramm, Laurier L. (2005). Emulsions, Foams, and Suspensions: Fundamentals and Applications. Wiley VCH. p. 173. ISBN 978-3-527-30743-2.
  6. ^ Chhabra, R.P. (2006). Bubbles, Drops, and Particles in Non-Newtonian Fluids (2nd ed.). Hoboken: Taylor & Francis Ltd. pp. 9–10. ISBN 978-1-4200-1538-6.
  7. ^ This demonstration of oobleck is a popular subject for YouTube videos.[which?]
  8. ^ a b "Oobleck: The Dr. Seuss Science Experiment". instructables.com.
  9. ^ "Outrageous Ooze". Exploratorium.
  10. ^ Rupp, Rebecca (1998). "Magic Mud and Other Great Experiments". The Complete Home Learning Source Book. Three Rivers Press. pp. 235–236. ISBN 978-0-609-80109-3.
  11. ^ Glurch Meets Oobleck Archived 6 July 2010 at the Wayback Machine. Iowa State University Extension.
  12. ^ Barra, Giuseppina (2004). The Rheology of Caramel (PhD). University of Nottingham.
  13. ^ Cartwright, Jon (2 September 2011). "Microscopy reveals why ketchup squirts". Chemistry World. Royal Society of Chemistry.

External links

Read more information:

Comunidad de comunas del Valle de Argelès-Gazost Comunidad de comunas Coordenadas 43°00′13″N 0°06′11″O / 43.0037251, -0.1031171Entidad Comunidad de comunas • País  Francia • Región Mediodía-Pirineos • Departamento Altos Pirineos • Comunas 16 • Fecha de creación 20 de diciembre de 1996 • Sede Argelès-GazostPresidente André PujoSuperficie   • Total 151,48 km²Población (2012)   • Total 702…

1987 film King LearFrench theatrical posterDirected byJean-Luc GodardScreenplay byPeter SellarsTom LuddyBased onKing Lear by William ShakespeareProduced byYoram GlobusMenahem GolanStarringBurgess MeredithPeter SellarsJulie DelpyLeos CaraxMolly RingwaldWoody AllenJean-Luc GodardNorman MailerCinematographySophie Maintigneux [fr]Edited byJean-Luc GodardMusic byLudwig van BeethovenJ. S. BachDistributed byCannon FilmsRelease dates 17 May 1987 (1987-05-17) (Cannes) 15&#…

Ле-Петі-СелланLe Petit-Celland Країна  Франція Регіон Нормандія  Департамент Манш  Округ Авранш Кантон Бресе Код INSEE 50399 Поштові індекси 50370 Координати 48°41′48″ пн. ш. 1°12′32″ зх. д.H G O Висота 22 - 193 м.н.р.м. Площа 6,57 км² Населення 176 (01-2020[1]) Густота 28,92 ос./км² Розміщ

Coordenadas: 46° 33' N 1° 10' E Bélâbre   Comuna francesa    Símbolos Brasão de armas Localização BélâbreLocalização de Bélâbre na França Coordenadas 46° 33' N 1° 10' E País  França Região Centro-Vale do Loire Departamento Indre Características geográficas Área total 40,85 km² População total (2018) [1] 979 hab. Densidade 24 hab./km² Código Postal 36370 Código INSEE 36016 Bélâbre é uma comuna francesa na regi…

Cet article est une ébauche concernant l’eau. Vous pouvez partager vos connaissances en l’améliorant (comment ?) selon les recommandations des projets correspondants. Pour les articles homonymes, voir Ride de pression. Ride de pression sur la banquise au pied du mont Erebus sur l'île de Ross, en Antarctique. Une ride de pression est en géomorphologie glaciaire une irrégularité plus ou moins linéaire qui se forme à la surface d'une banquise, que ce soit sur un plan d'eau douce ge…

United States disaster response agency, part of Department of Homeland Security FEMA redirects here. For other uses, see FEMA (disambiguation). Federal Emergency Management Agency (FEMA)Agency overviewFormedApril 1, 1979; 44 years ago (1979-04-01)[1]JurisdictionUnited States Department of Homeland SecurityHeadquartersWashington, D.C., U.S.MottoHelping people before, during and after disasters[2]Employees22,991 (Sep 2023)[3]Annual budget$29.5 billion (FY …

Piala Dunia FIFA 19541954 FIFA World Cup (Inggris) FIFA Fußball-Weltmeisterschaft 1954 Schweiz (Jerman) Championnat du Monde de Football 1954 (Prancis) Campionato mondiale di calcio 1954 (Italia) Campiunadis mundials da ballape 1954 (Romansh)Logo Resmi Piala Dunia FIFA 1954Informasi turnamenTuan rumahSwissJadwalpenyelenggaraan16 Juni–4 JuliJumlahtim peserta16 (dari 4 konfederasi)Tempatpenyelenggaraan6 (di 6 kota)Hasil turnamenJuara Jerman Barat (gelar ke-1)Tempat kedua Hun…

LGBT rights organisation Norwegian Organisation for Sexual and Gender DiversityFounded1949/1992HeadquartersOsloPresidentInge Alexander GjestvangWebsiteforeningenfri.no The Norwegian Organisation for Sexual and Gender Diversity (Norwegian: FRI – foreningen for kjønns- og seksualitetsmangfold) is the oldest, largest and preeminent Norwegian member organization representing the interests of gay, lesbian, bisexual, transgender and intersex persons in Norway. It originated as the Norwegian branch …

Shaza BaeLahirShaza Nuriman binti Mohamad Zamri24 Mei 1995 (umur 28)Kuala Lumpur, MalaysiaPendidikanSarjana Seni PertunjukanAlmamaterUniversitas Malaya (UM)PekerjaanModel, model iklan, pengacara, jurnalis, aktor, dosenTahun aktif2013–sekarang Shaza Bae (lahir Shaza Nuriman Mohamad Zamri; lahir 24 Mei 1995) adalah seorang model, pengacara, jurnalis dan aktris asal Malaysia. Dia dikenal publik setelah dinobatkan sebagai juara Dewi Remaja 2019-20.[1][2][3] Selain…

Jaworzno Power StationThe Jaworzno III Power StationOfficial nameElektrownia Jaworzno I-II-IIICountryPolandLocationJaworznoCoordinates50°12′30″N 19°12′18″E / 50.20827°N 19.20490°E / 50.20827; 19.20490StatusOperationalCommission date1898 (Jaworzno Power Station I)1953 (Jaworzno Power Station II)1976 (Jaworzno Power Station III)Decommission date1998 (Jaworzno Power Station I)Owner(s)PKEOperator(s)PKE Elektrownia Jaworzno IIIThermal power stat…

Ruanda Botschaft Ruandas in BerlinEmbassy of Rwanda in Germany Logo Staatliche Ebene bilateral Stellung der Behörde Botschaft Aufsichts­behörde(n) Außenministerium Bestehen 1. Juli 1962 Hauptsitz Deutschland BerlinBerlin-Mitte Botschafter Igor César Website www.rwandaingermany.gov.rw/de Geschäftshaus in der Jägerstraße 67–69mit den Botschaften von Ruanda und Guinea Die Botschaft Ruandas in Berlin ist die diplomatische Vertretung der Republik Ruanda in Deutschland. Si…

Linha A do Metro de Buenos Aires Plataforma da estação Plaza Miserere. Dados gerais Tipo Metropolitano Sistema Subte de Buenos Aires Local de operação Buenos Aires,  Argentina Terminais Início: Estação Plaza de MayoFim: Estação San Pedrito Estações 18 Passageiros/dia 258 000 (2018)[1] 2.87% [2] Operação Operador Emova Movilidad Histórico Abertura oficial 1 de dezembro de 1913 (110 anos) Dados técnicos Comprimento da linha 10,7 km Mapa A Linha A é uma das seis linha…

駐日アルバニア大使館Ambasada e Shqipërisë në Japoniアルバニア大使館が入居する北國新聞ビル(2020年)所在地 日本住所東京都中央区築地6-4-8 北國新聞ビル4階開設2005年12月(兼勤駐在官事務所)2009年4月(大使館実館)大使ジェルジ・テネケチェジウウェブサイトwww.ambasadat.gov.al/japan/ 駐日アルバニア大使館[1](アルバニア語: Ambasada e Shqipërisë në Japoni、英語: Embassy…

Statue of Bencomo at Candelaria, Tenerife Bencomo (Spanish pronunciation: [beŋˈkomo]; c. 1438 – 1495) was the penultimate mencey or king of Taoro, a Guanche menceyato on the island of Tenerife. He fought in the First Battle of Acentejo, a victory for the Guanches against the invading Castilians, after having refused the terms of Alonso Fernández de Lugo. He may have perished on the heights of San Roque during the Battle of Aguere alongside his brother Tinguaro.[1] He had sev…

Franchises des Studios Disneyau XXIe siècle Données clés Périodes 1922-1937 Premières productions 1937-1941 Premiers longs métrages d'animation 1941-1950 Première grève, Seconde Guerre mondiale 1950-1973 Télévision, films et décès de Walt Disney 1973-1988 Le studio endormi, guerre financière et Touchstone 1989-1995 Renaissance et Second âge d'or 1995-2005 Animation de synthèse et suites et Pixar 2006-2018 Pixar aux commandes 2019-aujourd'hui Disney+ et 20th Century Franchises…

Shopping mall in Accra, GhanaOxford StreetOxford Street Mall at nightLocationAccra, GhanaAddressOsu neighborhoodOwnerGhana Libyan Arab Holding Limited (GLAHCO)[1]No. of floors13 Oxford Street Mall is a shopping centre on Oxford Street in the Accra, Ghana neighborhood of Osu. Closure The Mall was closed down by Accra Metropolitan Assembly for lack of requisite occupancy certificate. It was however opened for business.[2] Facilities The Mall has restaurants, anchor shops, cinemas, …

Este artigo ou parte de seu texto pode não ser de natureza enciclopédica. Justifique o uso dessa marcação e tente resolver essas questões na página de discussão. (Março de 2016) Diocese/Arquidiocese Ano População Católicos % Católicos Angra 2010 269313 251871 93,52% Aveiro 2011 309000 270000 87,37% Beja 2011 211465 175465 82,98% Braga 2011 925000 835000 90,27% Bragança-Miranda 2011 136459 133249 97,65% Coimbra 2012 549000 500000 91,07% Évora[1] 2006 290000 245900 84,79% Faro 2011 4…

Эта статья или раздел нуждается в переработке.Пожалуйста, улучшите статью в соответствии с правилами написания статей. Jazelle — семейство технологий, разработанных и продвигаемых компанией ARM, предназначенных для аппаратного ускорения выполнения приложений, написанных…

О российском ордене см. Орден Кутузова (Россия). Орден Кутузова I степени II степени III степени Страна  СССР Тип орден Кому вручается командирам военных подразделений Статус вручается как орден Российской Федерации Статистика Дата учреждения 29 июля 1942 года Пер…

This article needs additional citations for verification. Please help improve this article by adding citations to reliable sources. Unsourced material may be challenged and removed.Find sources: Political factions during the Joseon dynasty – news · newspapers · books · scholar · JSTOR (August 2023) (Learn how and when to remove this template message) This article may require copy editing for grammar, style, cohesion, tone, or spelling. You can assist by e…

Kembali kehalaman sebelumnya