High Purity Glass Beads for Consistent Grinding and Blasting

Product Details
Customization: Available
Main Raw Material: Sio2
Appearance: Solid
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  • High Purity Glass Beads for Consistent Grinding and Blasting
  • High Purity Glass Beads for Consistent Grinding and Blasting
  • High Purity Glass Beads for Consistent Grinding and Blasting
  • High Purity Glass Beads for Consistent Grinding and Blasting
  • High Purity Glass Beads for Consistent Grinding and Blasting
  • High Purity Glass Beads for Consistent Grinding and Blasting
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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

High Purity Glass Beads for Consistent Grinding and BlastingHigh Purity Glass Beads for Consistent Grinding and Blasting

Hollow glass microspheres are a groundbreaking innovation in multifunctional fill materials, featuring exquisitely ultra-fine, hollow spherical forms that set a new standard in modern applications.
These microspheres, available in elegant shades of gray white or light gray, are primarily made from silicon dioxide and alumina, with a bulk density that holds tremendous potential.
ranging between 0.9-1.2 grams per cubic centimeter and boasting a true density of 1.7 grams per cubic centimeter. Their diverse particle sizes provide expansive versatility,
covering a range between 44-2.6 microns. They come in a variety of mesh sizes, including 325, 500, 800, 1250, 2500, and 5000 mesh. This ensures unmatched adaptability. With a sphericity exceeding 95%,
they are equipped with a durable outer shell that encapsulates inert gases such as nitrogen dioxide and carbon dioxide. These microspheres exhibit noteworthy high-pressure resistance (4000-7000 MPa),
remarkable wear resistance, and can withstand temperatures beyond 1450 degrees. Their outstanding chemical stability enables them to resist
common acidic, alkaline, and saline solutions, in addition to providing exceptional sound and thermal insulation properties, with a conductivity coefficient
ranging from 0.10-0.12, making them an ideal choice for an array of innovative applications.
Tailored customization of special particle sizes is available to meet specific and 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
Hollow glass microspheres exhibit extraordinary compressive strength and serve the following functions when integrated into composite materials:

They bring forth a plethora of outstanding features and advantages:
1: Enhanced Durability and Performance: Unlike conventional fillers, which may leave vulnerable soft or irregular particles, hollow glass microspheres offer unparalleled fineness,


substantially increasing scratch resistance and minimizing friction, thereby significantly enhancing the overall performance of the material.
2: Cost Efficiency: Renowned for their low oil absorption rate (15-18%), which is less than a third of talc powder or calcium carbonate,
hollow microspheres as fillers do not notably compromise material toughness, allowing for additions up to 70%,
while sustaining excellent flowability. This enables formation in tightly compact molds without the need for heat or pressure,
thus streamlining the manufacturing process and cutting costs efficiently.
Qinyuan Fuda New Material Technology Co., Ltd (referred to as Fuda New Materials), headquartered in Qinyuan, Shanxi Province,
is a distinguished industry and trade enterprise established in 2018, specializing in the sales and export of zirconium sandblasting and grinding series materials.
The company's production facility, situated in Linfen City, Shanxi Province, was constructed in 2015 and became operational in 2016. It boasts an impressive annual

High Purity Glass Beads for Consistent Grinding and BlastingHigh Purity Glass Beads for Consistent Grinding and BlastingHigh Purity Glass Beads for Consistent Grinding and BlastingHigh Purity Glass Beads for Consistent Grinding and Blasting
production capability of 2000 tons for zirconium series ceramic materials. Fuda New Materials provides a comprehensive range of products, including sandblasted ceramic beads, zirconia
microbeads, high-purity zirconia beads, and zirconium aluminum composite beads. Additionally, the company offers an extensive selection of glass
beads, zirconia powders, and stabilized zircons. It has strategically formed partnerships with leading domestic enterprises to advance the application and technical support of basalt fiber filaments and associated products.

Fuda New Materials is dedicated to delivering diverse zirconium series products and basalt fiber filaments, addressing the needs of the sandblasting, grinding, construction, and aerospace sectors,
ensuring that both domestic and international clients receive materials of the highest quality.
Q1. Are you a manufacturer?




High Purity Glass Beads for Consistent Grinding and BlastingHigh Purity Glass Beads for Consistent Grinding and Blasting


A: Absolutely, we're here to assist you every step of the way.

Q2. Can I visit your company?
A: Absolutely, we extend a warm and enthusiastic invitation to you. Experiencing it firsthand is the best way to be convinced.

Q3. Do you accept OEM?
A: Yes, indeed! We are thoroughly prepared and fully equipped to meet OEM requests with the utmost efficiency.

Q4. What is the minimum order quantity for a trial order?
A: We are dedicated to offering bespoke advice and solutions, meticulously crafted to align with your unique requirements.

Q5. How long is the delivery time?
A: The delivery schedule will be custom-tailored to the magnitude of your order, guaranteeing swift and reliable service.

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