The outstanding sphere roundness and silky smooth surface, combined with a luxurious, pearl-like luster, define its premium quality.
With unparalleled toughness and remarkable impact resistance, it stays intact even during high-speed operations, ensuring durability and reliability.
Zirconium beads boast wear resistance that surpasses glass beads by 30-50 times, embodying long-lasting endurance.
Their superior density elevates zirconium beads above conventional grinding beads, delivering exceptional grinding efficiency.
as they can either enhance material solidity or accelerate the flow rate, optimizing performance.
Showcasing outstanding features:
1. Ultra-low wear at ppm levels, promising lasting durability
2. Extraordinary hardness that resists breakage, ideal for grinding tough materials
3. High density dramatically enhances grinding efficiency, setting a new standard.
Varieties include 85 zirconium beads, 65 zirconium beads, and ZTA grinding beads, each tailored for specific needs.
Zirconium aluminum composite beads exude excellence with their impeccable roundness, glossy surface, and superior structural integrity—no pores, robust strength, and shatter-proof resilience.
They exhibit remarkable stability and resistance to acids and alkalis, promising minimal equipment wear and outstanding cost-effectiveness.
Ideal for a range of industries: gold, copper, and zinc mining, non-ferrous metals, coatings, paints, pesticides, papermaking, and titanium dioxide processing.
95 zirconia beads stand out with their exceptional roundness, flawless surface, and impressive density. Their robust hardness and exceptional stability against strong acids and alkalis make them a prime choice for high-precision grinding. With superior toughness, compressive strength, and impact resilience, they ensure low wear and minimal equipment strain, establishing themselves as the ultimate grinding medium.
Model specifications |
SA-500 |
SA-450 |
SA-400 |
SA-380 |
True density |
≥5.00g/cm3 |
≥4.50g/cm3 |
≥4.10g/cm3 |
≥3.75g/cm3 |
The mass densitY |
≥3.00g/cm3 |
≥2.65g/cm3 |
≥2.40g/cm3 |
≥2.20g/cm3 |
(HV5) Vickers hardness(HV5) |
≥1200 |
≥1200 |
≥1200 |
≥1350 |
The spherical degree |
>95%
|
>95%
|
>95%
|
>95%
|
Size rangedegree |
0.4-20mm |
0.4-20mm |
0.4-20mm |
0.4-20mm |
Main ingredients |
Zr02 + Al203 + |
Zr02 + Al203 + |
Zr02 + Al203+ Si02+ |
Zr02 + Al203+ Si02+ |
Available in a versatile Size range(mm)
0.3-0.35 |
0.35-0.40 |
0.4-0.5 |
0.6-0.7 |
0.7-0.8 |
0.8-1.0 |
1.0-1.2 |
1.2-1.4 |
1.4-1.6 |
1.6-1.8 |
1.8-2.0 |
2.0-2.2 |
2.2-2.4 |
2.4-2.6 |
2.8-3.0 |
3.0-3.2 |
3.8-4.0 |
5 |
6.5 |
7 |
8 |
10 |
12 |
15 |
17 |
20 |
25 |
30 |
35 |
40 |

With a robust production capacity of 2000 tons dedicated to zirconium series ceramic materials, Fuda New Materials offers an extensive selection of products, including high-performance sandblasted ceramic beads and zirconia
microbeads. Their portfolio expands to high-purity zirconia beads and zirconium aluminum composite beads. The company also provides a comprehensive range of glass
beads, zirconia powders, and stabilized zircons. Collaborations with leading domestic enterprises fuel innovations in basalt fiber filament applications and technical developments.
Fuda New Materials takes pride in offering a diverse range of zirconium series products and basalt fiber filaments, serving key sectors like sandblasting, grinding, construction, and aerospace.
Their commitment to quality ensures that both domestic and international clients receive unparalleled materials.
Q1. Are you a manufacturer?

A: Absolutely, we're poised to support you with unparalleled expertise and dedication.
Q2. Can I visit your company?
A: Certainly, we welcome you warmly. Seeing is believing.
Q3. Do you accept OEM?
A: Yes, we are fully prepared to fulfill OEM requirements.
Q4. What is the minimum order quantity for a trial order?
A: Our approach is to provide tailored advice and solutions that align with your unique requirements.
Q5. How long is the delivery time?
A: Delivery times are customized to match your order size, ensuring efficient service.