About Glass Beads
The offered Glass Bead is processed at our modern processing unit using top-notch quality glass with the implication of ultra-contemporary methodology under the proper supervision of experts. Available in various packaging options, this bead is widely used in gentle cleaning, conditioning, peening, deburring, descaling and others. In addition to this, our valued patrons can purchase the offered Glass Bead at most economical prices from us within promised time span.
Product Specification
Usage/Application Shot blasting, shot chrome
Material To Be Blasted Plate
Brand VISHAL GLASS SHOTS
Size 2 Microns
Color White
Shape Rounds
Material Glass
State Crystals
Minimum Order Quantity 500 Kg
Product Description
Supplier & prepared of Glass Beads For Sandblasting. Our product range comprises of glass beads for shot blasting, glass beads for peening and deburring, glass beads for surface preparation & glass beads for grinding of paints, chemicals, pigments, fertilizers, minerals, etc.
Features:
It provides a smooth and economic cleaning
It fits frequent cleaning
It is used on welding surface
It removes surface oxidation, flame stains
Additional Information
Delivery Time 2 TO 3 DAYS
Production Capacity 15000
Packaging Details 25 KG PP BAGS
Features:
- Long lasting shine
- Abrasion resistance
- Excellent transparency
- Seamless finish
Product Details:
| Minimum Order Quantity |
25 Kilogram |
| Shape |
Round |
| Color |
White |
Versatile ApplicationsThese glass beads are highly adaptable, serving a variety of industrial purposes such as abrasive blasting, enhancing road markings visibility, and decorative finishes. Their uniform spherical shape and excellent durability make them suitable for filtration as well, where clarity and high chemical resistance are essential.
Precision EngineeringManufactured using flame spheroidization, our glass beads ensure uniform size distribution and a smooth polished surface. With a tight tolerance of 0.02 mm and precise thickness ranging from 0.5 mm to 5 mm, they provide reliable performance across different industries requiring accuracy and consistency.
FAQs of glass beads:
Q: How are the glass beads produced to ensure uniformity and durability?
A: The glass beads are made using flame spheroidization, a process that melts and shapes soda-lime silicate glass into smooth, solid spheres. This technique guarantees uniform size, high compressive strength, and a polished finish for superior durability.
Q: What are the common industrial uses for these glass beads?
A: These beads are commonly used for abrasive blasting, improving visibility in road marking materials, decorative applications in architecture and crafts, and as filtration media due to their chemical resistance and consistent structure.
Q: When is it advisable to use glass beads over other abrasive materials?
A: Glass beads are preferable when a non-destructive, uniform finish is needed, especially for cleaning, peening or polishing surfaces without causing material loss. Their spherical shape minimizes surface damage versus angular abrasives.
Q: Where can custom-colored glass beads be applied?
A: Custom-colored glass beads are ideal for applications where aesthetic appeal is critical, such as in decorative finishes, embedded pavement markings, or artistic installations. Their color stability and resilience allow for versatile design uses.
Q: What is the chemical resistance of these glass beads, and what substances should be avoided?
A: Glass beads made from soda-lime silicate glass are resistant to most acids and alkalis, except for hydrofluoric acid, which can damage them. They perform well in environments requiring corrosion resistance.
Q: How does the refractive index benefit road marking applications?
A: With a refractive index of 1.51, these beads enhance reflectivity in road marking paints, significantly improving visibility for drivers under various lighting conditions, especially at night or in low-light environments.
Q: What are the advantages of using industrial glass beads in filtration systems?
A: Their smooth, non-crystalline structure and uniform spherical shape allow efficient flow and separation in filtration systems, while their chemical and thermal resistance make them suitable for demanding operating conditions.