Atomfair High-Hardness Beta Silicon Carbide Fine Abrasive Powder (3C-SiC)
Product Description
Atomfair High-Hardness Beta Silicon Carbide Fine Abrasive Powder (3C-SiC) is supplied as a high-hardness silicon carbide abrasive with microhardness approximately 1000–1500 kg/mm² higher than the supplier's standard and narrow-distribution abrasive grades. It is intended for high-hardness cutting, grinding, and polishing research.
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Technical Specifications
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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
- High-hardness silicon carbide abrasive format.
- Microhardness approximately 1000–1500 kg/mm² higher than the supplier’s standard and narrow-distribution abrasive grades.
- High-hardness abrasive format for cutting and grinding evaluation.
- Cubic beta-SiC structure for abrasive-performance research.
APPLICATION SCOPE: high-hardness cutting, grinding, and polishing 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.
How does the microhardness of Atomfair High-Hardness Beta SiC abrasive powder compare to standard abrasive grades?
The microhardness of this high-hardness beta silicon carbide powder is approximately 1000–1500 kg/mm² higher than the supplier's standard and narrow-distribution abrasive grades, as stated in the product specifications. This enhanced hardness makes it suitable for demanding cutting, grinding, and polishing research applications.
What is the significance of the cubic beta-SiC (3C-SiC) crystal structure for abrasive performance?
The product is supplied as a cubic beta-SiC (3C-SiC) structure, which is explicitly intended for abrasive-performance research. The cubic phase can exhibit different fracture toughness and wear characteristics compared to more common hexagonal SiC polytypes, potentially influencing grinding efficiency and surface finish in high-hardness material processing.
Can the particle size distribution and purity of this beta-SiC powder be customized for specific research applications?
Yes, custom particle-size and purity requirements may be evaluated for selected grades upon request, and alternative package sizes are also available. Minimum order quantities, pricing, and lead times vary by specification and will be confirmed during technical review and quotation.
This beta-SiC (3C-SiC) fine abrasive powder offers a microhardness advantage of 1000–1500 kg/mm² over standard grades, making it suited for high-hardness cutting, grinding, and polishing research, though its cubic phase and narrow-distribution format impose specific handling and application constraints.
Positive
- Elevated microhardness for demanding abrasion: Microhardness is approximately 1000–1500 kg/mm² higher than the supplier's standard and narrow-distribution abrasive grades, enabling effective cutting and grinding of high-hardness materials.
- Cubic beta-SiC phase for research: The 3C-SiC crystal structure provides a well-defined abrasive format for evaluating performance in high-hardness cutting, grinding, and polishing research applications.
Trade-offs
- Custom specs require technical review: Custom particle-size and purity requirements are evaluated only upon request, with minimum order quantities, pricing, and lead times confirmed during technical review and quotation, adding procurement lead time.
- Documentation not batch-included: COA and SDS are provided upon request for batch-specific confirmation, meaning standard shipments may not include these documents unless explicitly requested before order confirmation.
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).