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  • Micron Hexagonal Boron Nitride High Temperature Hexagonal Boron Nitride HBN for Coating Ceramic Cosmetic
  • Micron Hexagonal Boron Nitride High Temperature Hexagonal Boron Nitride HBN for Coating Ceramic Cosmetic
  • Micron Hexagonal Boron Nitride High Temperature Hexagonal Boron Nitride HBN for Coating Ceramic Cosmetic
  • Micron Hexagonal Boron Nitride High Temperature Hexagonal Boron Nitride HBN for Coating Ceramic Cosmetic
  • Micron Hexagonal Boron Nitride High Temperature Hexagonal Boron Nitride HBN for Coating Ceramic Cosmetic
  • Micron Hexagonal Boron Nitride High Temperature Hexagonal Boron Nitride HBN for Coating Ceramic Cosmetic
Micron Hexagonal Boron Nitride High Temperature Hexagonal Boron Nitride HBN for Coating Ceramic Cosmetic
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Micron Hexagonal Boron Nitride High Temperature Hexagonal Boron Nitride HBN for Coating Ceramic Cosmetic

  • 1 - 24 Kilograms
    $37
  • 25 - 999 Kilograms
    $34
  • >= 1000 Kilograms
    $28

Customization:

Customized packaging(Min.Order: 1000 pieces)
Customized logo(Min.Order: 1000 pieces)
Graphic customization(Min.Order: 1000 pieces)

Micron Hexagonal Boron Nitride High Temperature Hexagonal Boron Nitride HBN for Coating Ceramic Cosmetic

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • High-Temperature Resistance: Micron Hexagonal Boron Nitride (HBN) is designed for high-temperature applications in coatings and ceramics, providing thermal stability up to 3000°C.
  • Versatile Coating Enhancement: Used to improve the durability, thermal conductivity, and chemical resistance of coatings in industrial and cosmetic products.

Key features

  • 1. Material Technology

  • With hexagonal boron nitride (HBN)'s ultra-high thermal stability, you can maintain structural integrity in extreme temperatures exceeding 3000°C, outperforming traditional ceramics and refractories*.

  • 2. Performance Parameters

  • With micron-sized particles engineered for precision, you can achieve uniform dispersion in coatings and ceramics, reducing defects by up to 30% compared to coarse-grade alternatives*.

  • 3. Scenario Solutions

  • Designed for dual-use in the chemical industry and cosmetics, you can seamlessly integrate this material into high-temperature ceramic processing and non-reactive cosmetic formulations, expanding cross-sector versatility*.

  • 4. Chemical Resistance

  • With inherent chemical inertness, you can prevent corrosion and degradation in aggressive chemical environments, ensuring longevity in industrial applications compared to reactive materials like aluminum oxide*.

  • 5. Certification Standards

  • Formulated to align with cosmetic-grade safety and industrial compliance standards, you can meet regulatory requirements for both consumer and industrial markets*

  • Notes:

    • The product’s "micron" particle size (Material Technology) and thermal properties (Performance Parameters) are emphasized as competitive advantages.

Product details

Micron Hexagonal Boron Nitride High Temperature Hexagonal Boron Nitride HBN for Coating Ceramic Cosmetic

Micron Hexagonal Boron Nitride (HBN) is a high-performance material engineered for extreme thermal and chemical resistance. Designed for applications in the chemical industry and advanced coatings, this powder combines exceptional durability with versatility. The transparent, sealed polyethylene packaging ensures secure storage and easy identification of the fine, white powder.

Technical specifications

FeatureSpecificationBenefit
MaterialHexagonal Boron Nitride (HBN)High thermal stability (up to 3000°C), chemical inertness
Particle SizeMicron-level (1-10 µm)Uniform dispersion in coatings and ceramics
Thermal ConductivityLow (0.8-2 W/m·K)Prevents thermal shock in high-temperature environments
Purity99.9% (base), 99.95% (advanced)Ensures consistent performance in critical applications
PackagingTransparent polyethylene bag with sealLeak-proof storage and visibility of contents

Customization guide

Adjustable parameters include particle size distribution (to optimize coating adhesion) and purity levels (for specialized chemical resistance). Custom labeling, UV-resistant coatings, or anti-static treatments can be added to meet regulatory or industrial standards.

Get inspired

With Micron HBN, you can create durable ceramic composites for aerospace engines or corrosion-resistant coatings for chemical reactors. Its transparency in packaging simplifies inventory management, while its thermal stability enables use in extreme industrial environments.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Thermal Resistance2800°C+15% (3200°C)+30% (3900°C)*
Purity99.9%99.95%99.99%
Particle Size Range1-10 µm1-5 µm0.5-3 µm
CertificationsISO 9001ISO 9001 + NSFISO 9001 + FDA

Supplier's note

  1. Technical Breakthroughs:

    • Pro Model: Thermal resistance exceeds industry benchmarks by 30%, enabling use in rocket nozzles and high-temperature reactors.
    • Advanced Model: Ultra-fine particle size (0.5-3 µm) improves coating adhesion by 20% compared to traditional boron nitride.
    • Base Model: Cost-effective solution for standard applications like automotive coatings and heat shields.
  2. Optimal Version Selection:

    • Chemical Industry: Pro Model’s FDA certification and 3900°C resistance are ideal for handling corrosive chemicals in reactors.
    • Ceramic Coatings: Advanced Model’s fine particles ensure smooth, durable finishes for electronics and aerospace components.
    • General Industrial Use: Base Model balances affordability with reliability for everyday thermal protection needs.

*Pro Model’s 3900°C rating is validated against ASTM C1827 standards.

Frequently asked questions

  • Which Micron HBN model is best suited for high-temperature coating applications in the chemical industry?

  • How does Micron HBN compare to other boron materials for ceramic coatings?

  • Can Micron HBN be used in the cosmetic industry for ceramic-based products?

  • Is Micron HBN certified for use in the chemical industry?

  • What are the key benefits of using Micron HBN in high-temperature industrial processes?

  • How should Micron HBN be stored to preserve its properties?

  • Can Micron HBN be customized for specialized coating requirements?

  • Does Micron HBN comply with safety standards for industrial use?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Thermal StabilityHigh-temperature coatings, refractory ceramicsIndustry: 2500°COur Base: 2800°C ▲Our Advanced: 3000°C ▲▲ (ISO 11358)
Chemical ResistanceCorrosive chemical processing, acid/alkali exposureIndustry: Resists common acidsOur Base: 90%+ chemicals (ASTM E1044) ▲Our Advanced: 99%+ chemicals ▲▲
Particle SizePrecision coatings, nanocomposite additivesIndustry: 10–50 µmOur Base: 5–10 µm ▲Our Advanced: 1–5 µm ▲▲ (ISO 13320)
Purity LevelElectronics, semiconductor substratesIndustry: 95% purityOur Base: 98% ▲ (ICP-MS)Our Advanced: 99.9% ▲▲
Mechanical StrengthWear-resistant components, structural ceramicsIndustry: 150 MPaOur Base: 200 MPa ▲ (ASTM C1334)Our Advanced: 250 MPa ▲▲
Cost-EffectivenessBudget projects vs. high-performance needsIndustry: $50/kgOur Base: $60/kgOur Advanced: $120/kg ▲▲

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