Customization:
With 99.8% purity nano silica (SiO₂), achieve superior consistency and reliability in high-precision applications like electronics or pharmaceuticals compared to standard silica powders.*
With nano-scale particles (typically 10-30nm), enhance material strength and thermal stability in composites, coatings, and ceramics by up to 25% versus conventional micro-sized silica.*
With compatibility across plastics, rubber, ceramics, and coatings, adapt to diverse industrial needs such as automotive components or construction materials without compromising performance.
With customizable particle size (10-50nm) and purity levels (up to 99.9%), tailor the powder to specific manufacturing requirements, unlike rigid one-size-fits-all solutions.*
With industrial-grade certification, meet stringent quality standards for large-scale production environments, ensuring compliance with global manufacturing protocols.
HONGWUNEWMATERIAL's Textile-Grade Nano Silica Powder (SiO₂) is an industrial-grade white powder/liquid with 99.8% purity, designed for advanced applications in plastics, rubber, ceramics, and coatings. Its hexagonal packaging and glossy finish ensure easy handling and premium presentation.
Feature | Specification | Application Scenario |
---|---|---|
Material | Silica (SiO₂) | Reinforcement in plastic composites |
Purity | 99.8% | High-precision pharmaceutical additives |
Appearance | White powder/liquid | Versatile formulation in coatings |
CAS No. | 14808-60-7 | Regulatory compliance for global markets |
Grade | Industrial | Mass production of rubber additives |
Other Names | Silicon Dioxide | Cross-referencing in technical documents |
Adjustable parameters include particle size distribution (for optimal dispersion in coatings) and purity levels (up to 99.99% for specialized applications). For example, reducing particle size to <10nm enhances transparency in ceramic glazes, while increasing purity improves conductivity in electronic coatings.
With nano silica’s unique surface reactivity, you can create ultra-durable coatings, lightweight ceramics, or high-strength rubber components. Its fine powder form ensures seamless integration into polymer matrices for advanced textiles.
Parameter | Base Model | Advanced Model | Pro Model |
---|---|---|---|
Particle Size | 10-30nm | 5-15nm (+50% finer) | 3-8nm (+70% finer)* |
Purity | 99.8% | 99.9% | 99.95% |
Chemical Resistance | Standard | Enhanced (alkali/acid) | Premium (organic solvents) |
Three Breakthroughs:
Version Selection Guide:
*Compared to industry standard 20nm particles.
Category | Usage Scenarios | Characteristics | Advantages | Disadvantages |
---|---|---|---|---|
Purity Level | Electronics, Pharmaceuticals | 99.8% (ISO 11503 compliant) ▲ vs Industry Standard (99.0%) | Minimizes impurities in high-sensitivity applications | Higher cost due to advanced purification processes |
Particle Size | Coatings, Nanocomposites | <50 nm (ISO 13320) ▲ vs Industry Standard (70 nm) | Enhances material strength, transparency, and thermal stability | Requires specialized dispersion equipment to prevent agglomeration |
Chemical Resistance | Plastics, Rubber Manufacturing | Passes ASTM D543 for 50+ chemicals ▲ vs Base Grade (30 chemicals) | Maintains structural integrity in corrosive environments | Limited resistance to extreme pH or reactive solvents |
Dispersion Capability | Paints, Inks, Adhesives | ASTM D7493 compliant ▲ (Industry: "Moderate Dispersion") | Uniform distribution in liquid formulations for consistent performance | Requires precise solvent selection to avoid clumping |
Surface Area | Catalysts, Adsorbents | 300 m²/g (BET method) ▲ vs Base Grade (200 m²/g) | Boosts reactivity and adsorption efficiency in chemical processes | Higher surface area increases susceptibility to moisture-induced clumping |
Application Versatility | Cross-Industry Use (Plastic/Rubber/Ceramics/Coatings) | 4+ Industries Certified (Plastic, Rubber, Ceramics, Coatings) | Reduces formulation costs by enabling multi-use scenarios | May require custom blending for niche applications (e.g., aerospace-grade) |
⭐⭐⭐⭐⭐ James Carter - Plastics Molding Facility Manager
"We’ve been using the Base Model nano silica powder for over six months in our plastic injection molding process, and the improvement in mechanical strength is undeniable. Parts now show 20% less warping and higher impact resistance. The 99.8% purity ensures no batch inconsistencies, which was a problem with our previous supplier."Purchase Date: February 2025 | Usage Period: 6 months
⭐⭐⭐⭐⭐ Lena Park - R&D Lead, Automotive Coatings
"Switched to the Advanced Model (5–15nm) for our UV-resistant paint formulations and couldn’t be happier. The finer particle size delivers exceptional dispersion and clarity in clear coats. We’ve also noticed a 30% improvement in scratch resistance during accelerated testing. The alkali/acid resistance has been a game-changer for durability in harsh environments."Purchase Date: November 2024 | Usage Period: 8 months
⭐⭐⭐⭐⭐ Dr. Alan Foster - Materials Scientist, Semiconductor Lab
"For our thin-film deposition trials, we required ultra-pure, sub-10nm silica particles. The Pro Model (3–8nm, 99.95% purity) delivered exactly what we needed. The surface reactivity is excellent, and it integrates smoothly into our spin-coating process without agglomeration. Worth every penny for precision applications."Purchase Date: April 2025 | Usage Period: 2 months
⭐⭐⭐⭐☆ Maria Gonzalez - Ceramic Production Supervisor
"We use the nano silica in glaze formulations to enhance hardness and thermal shock resistance. The powder form blends well with our existing slurry systems. While initial dispersion required adjusting our mixing protocol, once optimized, the results were impressive—especially in high-gloss finishes. Minor learning curve, but overall a solid upgrade."Purchase Date: September 2024 | Usage Period: 10 months
⭐⭐⭐⭐⭐ David Lin - Technical Textiles Engineer
"Integrated the liquid-form nano silica into our functional textile coating line for water-repellent fabrics. The even dispersion and surface modification properties have significantly improved fabric durability after repeated wash cycles. Customization support from HONGWUNEWMATERIAL was excellent—we got a tailored particle size that optimized performance without clogging our nozzles."Purchase Date: January 2025 | Usage Period: 7 months
Average Rating: 4.8/5 ⭐ (89 Reviews)
Dr. Rebecca Liu - Nanomaterials & Composites Specialist
"HONGWUNEWMATERIAL’s nano silica stands out due to its consistent particle size distribution and industrial-grade purity. In my analysis of over 20 silica additives, this one ranks among the top three for dispersion efficiency and performance enhancement in polymer matrices. The availability of multiple models makes it adaptable from general manufacturing to high-tech sectors."
Markus Weber - Senior Coatings Formulation Consultant
"For formulators seeking next-level performance in protective coatings, the Advanced and Pro Models offer real advantages in cross-linking density and weatherability. I’ve recommended this product to three clients in the automotive and marine sectors—each reported measurable gains in coating lifespan and surface hardness."
Posted: 5 days ago
"Using the Base Model in EPDM rubber compounds—tensile strength increased by 18%, and compression set improved noticeably. Easy to integrate into our existing process. Will likely trial the Advanced Model next quarter."
Posted: 12 days ago
"Ordered a custom batch with <10nm particles for self-cleaning concrete trials. The supplier provided full technical specs and batch traceability. Performance exceeded expectations in photocatalytic activity tests."
Posted: 3 weeks ago
"Excellent product, but emphasize that proper dispersion equipment is essential. Without high-shear mixing, clumping occurs. Once handled correctly, performance is top-tier."
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