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Home > Cosmetic Ingredient > Viscosity Controlling (Find 530 items)

Cosmetic Ingredient

Chemicals as Skincare Ingredients

Viscosity Controlling

Achieve optimal viscosity in your cosmetic formulations with our viscosity controlling agents. Check all the chemical products you need for viscosity controlling with CAS NO., property information, and SDS. Shop viscosity-controlling raw chemical materials from certified suppliers with detailed product information.

Isopentane

(78-78-4)
It can be used as solvent for catalyst in polyethylene production, foaming agent for expandable polystyrene, foaming agent for polyurethane foam system, deasphalting solvent, etc.

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Polybutylene

(9003-29-6)
Hydrophobic material is derivatized to make detergents and anti-rust additives. Adds tack, flexibility and water repellency to adhesives and coatings. Contributes ′cling′ to LLDPE films. Plasticizer for polymers, lubricants and metal-working fluids.

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Propylene glycol alginate

(9005-37-2)
Propylene Glycol Alginate is a gum that is the propylene glycol ester of alginic acid, which is obtained from kelp. as compared to sodium alginates, it has reduced sensitivity to acid and calcium salts. it functions in acidic systems. it functions as a thickener, stabilizer, and emulsifier in beer, salad dressings, syrups, and fruit drinks.Propylene glycol alginate is used as a stabilizing, suspending, gelling, and emulsifying agent in oral and topical pharmaceutical formulations. Typically, a c

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Vitreous silica

(60676-86-0)
Installed in the reaction tube and absorption tube to locate the catalyst and adsorb impurities and filter the dust in the reaction gas

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Gum tragacanth

(9000-65-1)
In pharmaceutical compounding and dispensing, e.g., to suspend heavy insoluble powders, as an excipient for tablets and to impart consistence to troches; also in making emulsions and emulsifying agents; as stabilizer, thickener, texturizer in food; in adhesives (mucilages, pastes); in textile sizing, textile printing and general printing inks, and in dyeing with insoluble color lakes.

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Starch, hydrolyzed

(68412-29-3)
Acid modified starch can be used as excipient.

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Oleoylethanolamide

(111-58-0)
Lipid mediator and analog of anandamide (N-(2-Hydroxyethyl)-5Z,8Z,11Z,14Z-eicosatetraenamide ) that is involved in peripheral regulation of feeding. Selective GPR55 agonist (EC 50 values are 0.44, >30 and >30 μ M at GPR55, CB 1 and CB 2 respectively) and PPAR α agonist (EC 50 = 120 nM). Induces satiety through activation of PPAR α and is also a ceramidase inhibitor. Also endogenous agonist at the GPR119 receptor.FAAH catalysis is based o

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Sodium Lauroyl Sarcosinate

(137-16-6)
Sodium Lauroyl Sarcosinate is a surfactant extensively utilized in personal care products, valued for its outstanding cleansing and foaming properties. This ingredient is particularly common in shampoos and body washes, effectively removing dirt and grease while maintaining the natural moisture of hair and skin. Sodium Lauroyl Sarcosinate not only provides rich foam but also offers a gentle cleansing experience, making the usage enjoyable and comfortable for consumers. Moreover, it is widely applied in the cosmetics industry, significantly enhancing skin softness and smoothness, resulting in a more refined and elastic appearance. By incorporating this ingredient, cosmetics can better adhere to the skin, providing a more lasting makeup effect. Whether in creams, lotions, or cleansing products, Sodium Lauroyl Sarcosinate plays its unique role in improving the overall texture and appearance of the skin.

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Safflower oil

(8001-23-8)
Pharmaceutic aid (vehicle, oleaginous). safflower oil (Carthamus tinctorius) is a carrier oil also considered hydrating to the skin. It consists primarily of linoleic acid triglycerides. Safflower oil is a non-comedogenic raw material obtained from the plant’s seeds. Safflower Oil is an unsaturated oil obtained from the safflower seed of the plant carthamus tinctorius. it consists mainly of linoleic and oleic fatty acids. it is used principally as a drying oil in the usa.

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Dimethyl isosorbide

(5306-85-4)
dimethyl isosorbide is a carrier, solvent, and viscosity controller. Its particular skin-penetrating ability opens the possibility of enhancing active substance efficacy in optical products. Its physical characteristics and solubility properties are superior to those of propylene glycol, glycerin, or ethyl alcohol.

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Viscosity controlling refers to the manipulation of the thickness or flow properties of cosmetics. According to formulation needs, viscosity modifiers can be divided into natural and synthetic categories, with natural options such as gums and waxes offering gentle control, while synthetic polymers provide precise adjustments. According to the application method, viscosity-controlling agents can be divided into emulsifiers for stabilizing oil-in-water or water-in-oil formulations, and thickeners for enhancing texture and spreadability. "Viscosity control agents" on ECHEMl mainly supply raw materials for viscosity controlling.

More Information

Viscosity refers to a product's thickness and its resistance to deformation when force is applied, influencing how it flows and feels upon application.

In cosmetics, maintaining optimal viscosity is essential for product stability. For instance, if an emulsion is too thin, there's a risk of phase separation between oil and water components, leading to an unstable formulation that requires constant agitation or becomes ineffective over time. Similarly, in products containing suspended particles like color cosmetics or mineral sunscreens, inadequate viscosity can cause the particles to settle, resulting in formulation instability.

Main factors in viscosity controlling:

•Selection of rheology modifiers

•Concentration of thickeners or thinners

•Temperature effects

•Shear rate and shear stress

•pH of the formulation

Frequently Asked Questions

What is viscosity controlling and why is it important in industrial applications?

Viscosity controlling refers to the process of managing or adjusting the thickness or flow resistance of a liquid to meet specific performance requirements. It is crucial in industries such as paints, coatings, food processing, pharmaceuticals, and oil & gas, where consistent product texture, stability, and application behavior are essential for quality and efficiency.

What are common methods used for viscosity control?

Common methods for viscosity control include:1. Adding thickeners or rheology modifiers like cellulose derivatives, clays, or fumed silica.2. Using diluents or solvents to reduce viscosity.3. Adjusting temperature, as many fluids become less viscous when heated.4. Employing mechanical mixing or shear to temporarily alter flow properties.The choice of method depends on the base material, end-use requirements, and regulatory considerations.

How do viscosity modifiers affect product performance?

Viscosity modifiers significantly impact product performance by enhancing stability, preventing ingredient separation, improving application ease (e.g., sprayability or spreadability), and ensuring consistent texture. In lubricants, they help maintain optimal flow across temperature ranges. In food and cosmetics, they contribute to mouthfeel or skin feel. Selecting the right modifier ensures both functional performance and compliance with safety standards.

What factors should be considered when selecting a viscosity control agent?

When selecting a viscosity control agent, consider:1. Compatibility with the base formulation (e.g., water-based vs. solvent-based).2. Desired rheological profile (e.g., Newtonian, shear-thinning).3. Regulatory approval for intended use (e.g., FDA for food, REACH for EU chemicals).4. Stability under storage and processing conditions.5. Cost-effectiveness and ease of incorporation.Working with reputable suppliers who provide technical data and support can help ensure optimal selection.

Can temperature changes affect viscosity control in formulations?

Yes, temperature has a direct impact on viscosity—most liquids become less viscous as temperature increases and more viscous when cooled. This is especially critical in applications like engine oils, adhesives, or food sauces that must perform consistently across varying temperatures. Effective viscosity control strategies often include using temperature-stable rheology modifiers or designing formulations with a balanced viscosity index to minimize thermal sensitivity.

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