Beta Silicon Carbide Powder >99%, D50 66 μm ATOMFAIR®

Price range: $199.00 through $749.00

Institutional Procurement & Supply Compliance: As a verified US supplier, Atomfair accepts formal institutional Purchase Orders (POs), contract billing schedules, and custom procurement loops for university and national laboratories, and corporate R&D departments globally.

High-flow 3C-SiC powder with >99% purity, D50 66 μm, D10 40.5 μm, D90 104 μm, rounded morphology, and 1.85 g/cm3 tap density for ceramics. Order now.

SKU: AF-FM-C-SICS-966S-SP00
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Atomfair High-Flow Beta Silicon Carbide Powder (3C-SiC), >99% Purity, D50 66 μm


Atomfair High-Flow Beta Silicon Carbide Powder (3C-SiC), >99% Purity, D50 66 μm

Product Description

Atomfair High-Flow Beta Silicon Carbide Powder (3C-SiC) is supplied with >99% purity, D50 66 μm particle size, and a regular, rounded particle morphology with good flowability and dense-packing characteristics. It is intended for 3D printing, ceramics, spraying, and composite-materials research.

Technical Specifications
Parameter Specification / Available Values
Product High-Flow Beta Silicon Carbide Powder (3C-SiC)
Material Silicon carbide
Chemical Formula SiC
Crystal Phase / Structure Cubic beta-SiC (3C-SiC)
Purity >99%
Particle Morphology Regular, rounded
D10 40.5 μm
D50 (Median Particle Size) 66 μm
D90 104 μm
D97 ≤122 μm
Tap Density 1.85 g/cm³ (tap)
Impurity Profile Fe₂O₃<0.08%; SiO₂<0.1%; F.Si < 0.1%; F.C < 0.05%

Customization & Ordering

Custom particle-size and purity requirements may be evaluated for selected
grades upon request. Alternative package sizes may also be available.
Minimum order quantities, pricing, and lead times vary by specification and
will be confirmed during technical review and quotation.

Key Features and Advantages

  • Defined >99% purity grade with D50 66 μm particle size.
  • Regular, rounded particle morphology with good flowability and cleanliness.
  • High filling density and good moldability for formulation and feedstock evaluation.

APPLICATION SCOPE: 3D printing, ceramics, spraying, and composite-materials research

DOCUMENTATION: COA and SDS can be provided upon request for batch-specific confirmation. Additional documentation requirements may be discussed before order confirmation.

LABORATORY PROCUREMENT SUPPORT

For grade selection, particle-size confirmation, documentation support or custom specification review, contact our technical sales team.

E-MAIL: inquiry@atomfair.com


What particle-size distribution and flow characteristics does Atomfair High-Flow 3C-SiC powder provide for feedstock formulation?

The powder is specified with D50 66 μm, D10 40.5 μm, D90 104 μm, and D97 ≤122 μm, giving a broad but bounded distribution. Its regular, rounded particle morphology and tap density of 1.85 g/cm³ support good flowability and dense packing, which are important for 3D printing, ceramic forming, spraying, and composite feedstock evaluation.

Can this beta-SiC powder be used directly in ceramic 3D printing, spraying, and composite materials research?

The manufacturer lists the application scope as 3D printing, ceramics, spraying, and composite-materials research. The high-flow, rounded morphology and >99% purity make it intended for formulation and feedstock evaluation in those routes. Specific printer or spray-system operating parameters are not stated, so process compatibility should be confirmed through technical review.

What impurity limits and quality documentation are specified for this Atomfair SiC powder?

Purity is >99%, with Fe₂O₃ <0.08%, SiO₂ <0.1%, F.Si <0.1%, and F.C <0.05%. COA and SDS can be provided upon request for batch-specific confirmation, and additional documentation requirements can be discussed before order confirmation.

This 3C-SiC powder with D50 66 μm, >99% purity, and regular rounded morphology is evaluated for high-flow and dense-packing performance in 3D printing, ceramics, spraying, and composite research, with trade-offs in impurity sensitivity and handling infrastructure.

Positive

  • High flowability and dense packing: Regular, rounded particle morphology with D50 66 μm and tap density 1.85 g/cm³ enables good flowability and high filling density, improving moldability and feedstock consistency for 3D printing and spray applications.
  • Defined purity for sensitive formulations: >99% purity with controlled impurities (Fe₂O₃<0.08%, SiO₂<0.1%, F.Si<0.1%, F.C<0.05%) reduces contamination risk in ceramic and composite research requiring trace-level control.

Trade-offs

  • Impurity sensitivity in high-temp processing: Residual Fe₂O₃ and SiO₂ at stated levels may influence sintering behavior or phase stability in high-temperature ceramic or composite applications, requiring batch-specific validation via COA.
  • Handling and dispersion infrastructure needed: Fine powder with D50 66 μm and D97 ≤122 μm requires proper dust control, dispersion equipment, and safety protocols (SDS available) to manage airborne particulates during spraying or powder handling.

Every advanced material, component, equipment, and instrument in our catalog is backed by rigorous testing. We maintain strict internal quality management frameworks and align with CE conformity metrics to deliver transparent, reproducible performance data via our public open-science repository.

To request raw batch performance data, submit formal vendor registration paperwork, or execute a fast-turnaround R&D manufacturing loop, contact us at inquiry@atomfair.com.

Item is dispatched under the Atomfair Shipping & Delivery Framework (Free worldwide shipping on orders over $59 USD excl. heavy equipment). Return is governed by the Atomfair Return & Refund Policy (7-day technical return window).

Package

500g, 1kg, 5kg