B80 Zirconia Ceramic Bead Blasting For Mental Clean High Density
Product Details:
Place of Origin: | Zhengzhou |
Brand Name: | Zhengtong |
Certification: | N/A |
Model Number: | B20-B505 |
Payment & Shipping Terms:
Minimum Order Quantity: | Negotiable |
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Price: | Negotiable |
Packaging Details: | 25kgs Barrels+Pallet |
Delivery Time: | 3-10 days |
Payment Terms: | L/C, T/T, Western Union, MoneyGram |
Supply Ability: | 200mts per month |
Detail Information |
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Features: | High Density, High Strength And Long Life | Product Name: | Zirconia Ceramic Blasting Media |
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Color: | White | Chemicals: | 60-66% ZrO2,SiO2 25-30% |
Bulk Density: | 2.3 G/cm3 | True Density: | 3.85g/cm3 |
Vickers Hardness: | 700HV | Application: | Sand Blasting And Shot Blasting |
Highlight: | Zirconia Ceramic Bead Blasting High density,B80 Zirconia Ceramic Bead Blasting,3.85 g/cm3 Zirconia Ceramic Bead Blasting |
Product Description
1. Product Description
The main component of ceramic beads is zirconia, and ceramic beads are mainly used for surface treatment, like sand blasting and shot peening. The production process of ceramic shot is to melt high-quality imported zircon sand into liquid at high temperature, and then spray it into balls.
The zirconia ceramic balls are sieved and removed by magnetic separation to get particles with high roundness, high strength and uniform particle size. The spherical particles of ceramic beads can help to achieve better surface brightness during sandblasting, while the workpiece itself does not change color.
Ceramics beads are widely used for sandblasting and surface treatment of aviation parts, stainless steel plates, structural parts, gulf club, medical equipments, mobile phone / laptop shell, automobile chassis / engine and other industries.
2. Main Technical Data of Ceramic Bead Blasting
Product | Process | Specific Density | Bulk Density |
Ceramic beads | Electro-fusing | 3.85 (g/cm³) | 2.3 (g/cm³) |
Chemical Components | ZrO2 62-68%,SiO2 25-30%,Al2O3 7-13%,Other 1% Max. | ||
Size Available(mm) | Blasting-clean/Surface finish | Shot peening | |
B20: 0.600-0.850mm | Z150: 0.150-0.210mm, | ||
B30: 0.425-0.600mm | Z210: 0.210-0.300mm | ||
B40: 0.250-0.425mm | Z300: 0.300-0.425mm, | ||
B60: 0.125-0.250mm | Z425: 0.425-0.600mm, | ||
B80: 0.180-0.250mm | Z600: 0.600-0.850mm | ||
B100: 0.128-0.18mm | Z850:0.850-1.180mm | ||
B120: 0.063-0.125mm | Size can be customized | ||
B170: 0.045-0.090mm | |||
B205 : 0.000-0.063mm | |||
B400: 0.000-0.063mm |
3. Main Features of Ceramic Bead Blasting
1)Good spherical shape and smooth surface;
2)Outstanding elasticity provides a high impact force.
3)High wear resistance, high impact resistance, and low dust.
4)Cost-effective compared to glass beads, media consumption reduced up to 90% Vs glass Beads.
5)Suitable for dry blasting and wet blasting.
4. Main Application of Ceramic Bead Blasting
1)Medical treatment: surface treatment, like deburring, cleaning, poloshing of stainless steel instruments and equipments;
2)High iron field: it can be used for sandblasting the surface of high iron aluminum alloy parts to improve the metal texture and form a smooth satin effect.
3)Automotive industry: ceramic beads can be used for surface cleaning and deburring of Automotive Engine Castings; It is used to clean the welds and welding spots on the car floor and prepare for subsequent spraying; Used for shot peening of automobile springs to improve fatigue life. It is used for beautification and sandblasting of aluminum alloy automobile wheels to eliminate stress and improve impact resistance.
4)Mold and machining: used for sand blasting and cleaning of stainless steel,copper and aluminum alloy mold, like tire mold and injection mold to improve surface finish.
5)Electronic equipment field: ceramic beads are used for sandblasting the shells of mobile phones, computers and watches made of aluminum alloy or stainless steel. It can adjust the roughness and gloss of the surface as required.
6)Golf Club ball field:used for sandblasting and finishing of surface.
7) Shot peening of aviation parts: ceramic beads are used to improve the fatigue resistance of carbon steel, titanium alloy, aluminum alloy and other aviation mechanical parts and eliminate surface stress.