Efficient Glass Microsphere Media for High-Quality Blasting Applications

Product Details
Customization: Available
Main Raw Material: Sio2
Appearance: Solid
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  • Efficient Glass Microsphere Media for High-Quality Blasting Applications
  • Efficient Glass Microsphere Media for High-Quality Blasting Applications
  • Efficient Glass Microsphere Media for High-Quality Blasting Applications
  • Efficient Glass Microsphere Media for High-Quality Blasting Applications
  • Efficient Glass Microsphere Media for High-Quality Blasting Applications
  • Efficient Glass Microsphere Media for High-Quality Blasting Applications
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Basic Info.

Model NO.
Hollow Glass Beads
Color
White
Korean Standard
Ksl2521No.1 and 2
British Standard
BS6o88 Class a and B
European Standards
En1423 and En1424
Japanese Standard
Tjis R3301
Australian Standard
a, B, C, D
American Standard
Aashtom247type 1 and Type 2
Transport Package
Bags
Specification
850-425
Trademark
Fuda
Origin
China
HS Code
7018200090
Production Capacity
2000tons/Year

Product Description

Efficient Glass Microsphere Media for High-Quality Blasting ApplicationsEfficient Glass Microsphere Media for High-Quality Blasting Applications

Revolutionize your production potential with our Hollow Glass Microspheres-a groundbreaking, multifunctional filler material that showcases ultra-fine, hollow spherical geometry.
These state-of-the-art spheres flaunt an enticing gray-white or light gray shade. Their core composition includes silicon dioxide and alumina, offering an impressive bulk density
between 0.9 and 1.2 grams per cubic centimeter, complemented by a true density of 1.7 grams per cubic centimeter. Available in a range of particle sizes,
from 44 to 2.6 microns, these spheres are classified into 325 mesh, 500 mesh, 800 mesh, 1250 mesh, 2500 mesh, and 5000 mesh, catering to a wide array of applications.
With an exceptional sphericity exceeding 95%, they feature a robust outer shell encased in inert gases like nitrogen dioxide and carbon dioxide,
demonstrating high-pressure resistance of 4000 to 7000 MPa, exceptional wear resistance, and fire resistance surpassing 1450 degrees.
The material showcases extraordinary chemical stability, resisting common acids, alkalis, and salt solutions. It also offers outstanding sound and thermal insulation,
featuring a conductivity coefficient ranging from 0.10-0.12.
For specially tailored applications, particle sizes can be customized to precisely align with your unique requirements.

Category NO Sieve Size Standard diameter((μm)
30# 20-40 850-425
40# 30-40 600-425
60# 40-60 425-300
80# 60-100 300-150
100# 70-140 212-106
120# 100-140 150-106
150# 100-200 150-75
180# 140-200 106-75
220# 140-270 106-53
280# 200-325 75-45


Our Hollow Glass Microspheres are meticulously engineered for superior compressive strength, delivering additional advantages
and remarkable features when integrated into composite materials:


1: Amplify strength and optimize performance: Unlike conventional fillers, which may leave behind soft or irregular particles, these microspheres are
exceedingly fine, greatly enhancing scratch resistance and reducing friction, resulting in a significant overall performance boost.

2: Cost-effective solutions: With an incredibly low oil absorption rate of merely 15-18%-a fraction of talc powder and calcium carbonate-these microspheres
enable substantial filler additions (up to 70%) without sacrificing impact strength. Their excellent flowability
facilitates molding into compact forms without the necessity of heat or pressure, streamlining manufacturing processes and reducing expenses.

Strategically positioned in Qinyuan, Shanxi, Qinyuan Fuda New Material Technology Co., Ltd (Fuda New Materials) merges industry expertise with commercial acumen.

Efficient Glass Microsphere Media for High-Quality Blasting ApplicationsEfficient Glass Microsphere Media for High-Quality Blasting ApplicationsEfficient Glass Microsphere Media for High-Quality Blasting ApplicationsEfficient Glass Microsphere Media for High-Quality Blasting Applications

Since its founding in 2018, Fuda New Materials has excelled in the sales and export of top-tier zirconium sandblasting and grinding series materials.


Our cutting-edge production facility, located in Linfen City, Shanxi, was founded in 2015 and began operations in 2016, boasting an impressive
annual output of 2000 tons of zirconium series ceramic materials. Our premier products include sandblasted ceramic beads, zirconia
microbeads, high-purity 95 zirconia beads, and zirconium aluminum composite beads. Additionally, we supply an extensive variety of glass
beads, zirconia powders, as well as stabilized zircons. By partnering with renowned domestic associates, we lead in
vertical integration, providing comprehensive application, technical services, and product sales for basalt fiber filaments and series.
We offer a broad spectrum of zirconium series products for sandblasting and grinding, alongside versatile basalt fiber filaments
and related products, addressing the ambitious needs of the construction and aerospace industries domestically and internationally.
Efficient Glass Microsphere Media for High-Quality Blasting ApplicationsEfficient Glass Microsphere Media for High-Quality Blasting Applications

Q1. Are you a manufacturer?
A: Yes, indeed, without any doubt.

Q2. Can I visit your company?
A: Absolutely, we wholeheartedly welcome you! As the saying goes, seeing is believing.

Q3. Do you accept OEM?
A: Yes, we are fully capable and ready to accommodate OEM requests, ensuring your custom needs are met with precision and expertise, thereby enhancing your brand's distinct identity.

Q4. What is the minimum order quantity for a trial order?
A: We are committed to devising the most suitable advice and tailor-made solutions for your unique situation, ensuring a seamless experience from consultation to delivery, perfectly aligned with your specific objectives.

Q5. How long is the delivery time?
A: The delivery time is flexible and will primarily depend on the quantity of your order, allowing us to efficiently manage turnaround times to maximize your project's success.

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