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Glamour Party Mulberry

Superior Chunky Sparkle for High-Impact Formulations

INCI Name: Calcium Aluminum Borosilicate, Tin Oxide, Titanium Dioxide, Carmine

Elevate your formulas with Glamour Party Mulberry, a premium chunky cosmetic pigment. Based on calcium aluminum borosilicate, its large 100–1000 μm particles create a dazzling, high-impact red-purple sparkle. Ideal for creating statement eyeshadows, bold lip toppers, and shimmering body care products that demand attention.

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Perfect For These Applications

Other cosmetic uses possible—contact us for formulation guidance.

Loose & Pressed Glitter Eyeshadows
Creates a high-impact, multi-dimensional glitter effect with a surprisingly smooth feel and excellent adhesion when used with an appropriate binder.
High-Impact Lip Toppers & Glosses
Provides a bold, scintillating sparkle in lip gloss and topper formulations, perfect for creating a statement look.
Body & Hair Gels/Glitters
Suspends effectively in gel bases to deliver a dramatic, all-over sparkle for body, face, and hair applications.
Suspension-Based Nail Lacquers
Offers a striking chunky glitter effect in nail polish, requiring a suspension base to ensure even distribution of the large particles.
Anhydrous 'Putty' & Balm Formulations
Adds a unique visual and textural element to anhydrous balms and putty highlighters for a dewy, glitter-packed finish.
Melt & Pour Soap Embeds
Provides large, eye-catching decorative sparkles when embedded into clear melt-and-pour soap bases.

Performance & Formulation Insights for Glamour Party Mulberry

Borosilicate Glass: The Foundation for Unmatched Sparkle

Glamour Party Mulberry is built on a Calcium Aluminum Borosilicate substrate, a lab-created glass platelet. Unlike natural mica, these flakes are exceptionally smooth, transparent, and manufacturable in very large particle sizes. This foundation yields superior reflectivity and a cleaner, more intense sparkle versus traditional pearls, achieving a true glitter-like effect without the use of microplastics.

Formulating with Large-Particle Pigments

The significant particle size (100–1000 μm) of Glamour Party Mulberry drives its dramatic visual impact. In liquid and gel systems, incorporate suspending agents or rheology modifiers (e.g., synthetic clays or high-viscosity polymers) to minimize settling and ensure uniform distribution. For pressed powders, employ a robust binder system to maximize adhesion and reduce fallout.

Key Formulation Benefits

  • Intense Chunky Sparkle: Delivers a bold, glitter-like effect with exceptional brilliance and a vibrant red-purple hue for statement cosmetics.
  • Smooth, Comfortable Feel: The borosilicate substrate offers a smoother feel on skin compared to traditional glitter of similar size.
  • High Visual Impact: Large particles create a dazzling, multi-dimensional look that stands out in any formula.
  • Excellent Versatility: Ideal wherever dramatic sparkle is the priority, from eyeshadows and lip toppers to body and hair gels.
Heading #1
Line/Series
Glamour
INCI Name
Calcium Aluminum Borosilicate, Tin Oxide, Titanium Dioxide, Carmine
Physical Product Color
Red
Color Effect
Purple/Violet, Red
Effect Type
Chunky
Material Type
Borosilicate, Powder
Certifications
Particle Size
100-1000 μm
Applications
Eye, Face, Lip

Frequently Asked Questions About Glamour Party Mulberry

It has a very large particle size range of 100–1000 μm, responsible for its signature chunky, glitter-like effect.
The pigment uses Calcium Aluminum Borosilicate, a synthetic glass flake, as its base. This substrate is extremely smooth and transparent, providing superior light reflection and sparkle compared to standard mica.
Yes. All components are permitted for use in lip care products in the United States, making it ideal for high-impact lip toppers and glosses.
No. It contains Carmine (CI 75470), an insect-derived colorant, to achieve its vibrant mulberry shade.
It delivers a glitter effect using mineral-based borosilicate flakes rather than plastic particles, offering a popular option for formulators looking to avoid microplastics.
Use a high-viscosity base or include a rheology modifier such as a carbomer, gum, or synthetic clay to prevent settling and maintain uniform distribution.
Yes. Due to the large particle size, a strong binder system is recommended to improve pan adhesion and minimize fallout during application.

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Glamour Party Mulberry

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