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Reološke lastnosti gelov za lase
ID Gartnar, Peter (Author), ID Slemenik Perše, Lidija (Mentor) More about this mentor... This link opens in a new window

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Abstract
Snovem lahko določamo različne fizikalne lastnosti. V teoriji obravnavamo dva skrajna primera idealnega obnašanja; in sicer idealno viskozno tekočino in idealno elastično trdno snov. Lastnosti idealne tekočine lahko opišemo z Newtonovim zakonom, lastnosti idealne trdne snovi pa opisujemo s pomočjo Hookovega zakona. Realne snovi, ki se nahajajo med obema skrajnostma, običajno izražajo tako elastične kot viskozne lastnosti. Snovem s takšnimi lastnostmi pravimo viskoelastične snovi. Mednje spada tudi gel za lase. To je kozmetični izdelek, s katerim je mogoče oblikovati najrazličnejše sloge pričesk in zagotavlja daljšo časovno obstojnost pričeske. V mirovanju je gel trdna snov, ki ob delovanju strižnih sil izgubi strukturo in steče. Gel za lase je narejen iz deionizirane vode, polimerov za fiksacijo, zgoščevalcev, nevtralizatorjev, konzervansov, dišav in solubilizatorjev. Za lastnosti gela je najbolj pomembna izbira polimera za fiksacijo in zgoščevalca. Izbira polimera za fiksacijo določa odpornost in moč filma, ki se oblikuje na laseh. Z zgoščevalcem pa določimo lastnosti gelske osnove, ki v nadaljevanju določajo, kako se gel razmaže in vdela v lase. Pravilno zaporedje dodajanja komponent pri izdelavi gela omogoča, da bo gel prozoren in homogen. S pomočjo reoloških lastnosti lahko preverjamo ali je gel pri izdelavi dosegel pravilno viskoznost oziroma strukturo in kako se bo obnašal pri delovanju strižne sile. Z reologijo lahko odkrivamo nove in izboljšujemo stare formulacije. Z razvijanjem novih polimerov in drugih sestavin, ki so potrebne za izdelavo gelov, se vztrajno povečuje število novih formulacij. V diplomski nalogi je predstavljena raziskava strokovnih in znanstvenih člankov na področju gelov za lase. Raziskave zajemajo lastnosti gela v odvisnosti od koncentracije polimerov za fiksacijo, primerjajo uporabo tradicionalnih in novih polimerov, odpornost gelov na soli ter možnosti uporabe naravnih polimerov. Z njimi so bile zajete glavne lastnosti in problematike gelov za lase.

Language:Slovenian
Keywords:geli za lase, reologija, viskoelastičnost, polimeri za fiksacijo
Work type:Bachelor thesis/paper
Typology:2.11 - Undergraduate Thesis
Organization:FKKT - Faculty of Chemistry and Chemical Technology
Year:2020
PID:20.500.12556/RUL-118885 This link opens in a new window
COBISS.SI-ID:27211267 This link opens in a new window
Publication date in RUL:01.09.2020
Views:1168
Downloads:177
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Secondary language

Language:English
Title:Rheological properties of hair gels
Abstract:
The materials exhibit various physical properties. In theory two extreme examples of behaviour can be distinguished; namely an ideal viscous fluid and an ideal elastic solid. The properties of an ideal fluid can be described by Newton’s law, while an ideal solid can be described by Hooke’s law. Real materials usually express both viscous and elastic properties and are therefore called viscoelastic materials. Such materials are also hair gels. A hair gel is a cosmetic product that can be used to create hairstyles with a long-lasting effect. At rest, a hair gel is a solid substance that loses viscosity and starts to flow under the application of shear forces. Hair gel is made of deionized water, fixing polymers, thickeners, neutralizers, preservatives, fragrances and solubilizers. The selection of the correct fixing polymer and thickener is the most important for the properties of gel. Fixing polymer determines the resistance and stiffness of the film that is formed on the hair. On the other hand, the thickener determines the base properties of the gel, which define the spread-ability of the gel and how it incorporates into the hair. The correct sequence of adding components during the preparation of the gels enables the gel to be clear and homogeneous. With rheological properties we can test whether the gel has reached the proper viscosity during the manufacturing and how it behaves under shear forces. Rheology enables to discover new and to improve old formulations. Development of new polymers and other ingredients persistently increases the number of new formulations. In the present research, the scientific academic articles are presented. The main goal was to determine the properties of hair gels, the dependence of the properties on the concentration of fixing polymers, the comparison between traditional polymers and the new ones, the resistance of the gels to salt and other possible uses of natural polymers. The articles covered the main properties and problems of hair gels.

Keywords:hair gels, rheology, viscoelasticity, fixing polymers

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