Aluma Cut Die Grinder Bits For Stainless Steel Metal Removal Carbide Burrs
Product Details:
Place of Origin: | Zigong, Sichuan, China |
Brand Name: | Xinsheng |
Model Number: | All models |
Payment & Shipping Terms:
Minimum Order Quantity: | 50 Piece |
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Price: | $1.00 - $10.00/ Pieces |
Packaging Details: | Plastic box in Standard export carton |
Delivery Time: | 15 Days |
Payment Terms: | L/C,Western Union,T/T |
Supply Ability: | 100000 Piece/Pieces per Month |
Detail Information |
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Product Name: | Cylindrical Carbide Burr | Material: | 100% Raw Tungsten Carbide |
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Grade: | YG6/YG8/YG10X | Usage: | Wood、Metal、other Hard Metals Etc. |
Cut Shape: | Aluma Cut Die Grinder Bits | Highlight: | Carbide Burrs For Stainless Steel, Aluma Cut Die Grinder Bits |
Highlight: | Aluma Cut Die Grinder Bits,Die Grinder Bits For Stainless Steel,Aluma Cut die grinder bits for steel |
Product Description
Aluma Cut Die Grinder Bits For Stainless Steel Metal Removal Carbide Burrs
Xinsheng Cut Die Grinder Bits Carbide burrs are tools commonly employed in metalworking for tasks such as cutting, grinding, and shaping metal surfaces. Typically crafted from a mixture of tungsten and cobalt metal powders, carbide is a remarkably hard and wear-resistant material, formed through sintering at high temperatures and pressures.
Aluma cut refers to carbide burrs specifically engineered for processing aluminum alloys. The advantages of carbide burrs with Aluma cut designation are outlined as follows:
- Hardness and Wear Resistance: The high hardness of carbide ensures the retention of sharpness during machining. This attribute is particularly crucial for processing softer aluminum alloys, contributing to extended tool life and enhanced performance stability.
- High Thermal Stability: Carbide burrs with Aluma cut designation exhibit elevated thermal stability, indicating resistance to deformation or annealing during high-speed cutting. This characteristic contributes to maintaining cutting surface quality and prolonging tool life.
Tailored for Aluminum Alloys: Aluma cut carbide burrs are specifically designed for aluminum alloys, taking into account their unique characteristics. These include the lower hardness, high thermal conductivity, and propensity for chip adhesion associated with aluminum alloys.Reduced Chip Accumulation: The design of Aluma cut carbide burrs facilitates a reduction in chip adhesion, preventing the accumulation of cutting debris on the tool surface. This aids in improving cutting efficiency while mitigating friction and heat generation during the machining process.In summary, Xinsheng cut carbide burrs offer a more efficient and stable cutting performance when processing aluminum alloys, reducing tool wear and enhancing the quality of machined surfaces.How to use the carbide burrs:
1. Speed /RPM
The speed at which you use your carbide bur in your rotary tool will depend on the material you're using it.
The contour being produced but it's safe to say you do not need to exceed speeds of 35,000 RPM.
The table below shows some approximate speeds:
Diameter of Burr RPM 3mm or 1/8" 17,000 - 26,000 2.35mm or 3/32" 17,000 - 26,000
6mm or 1/4" 11,000 - 16,500 12mm or 1/2" 8,000 - 12,000 16mm or 5/8" 7,650 - 11,500
2. Apply only a little pressure
As with all drill bits and burrs, let the burr do the work and apply only a little pressure otherwise the cutting edges of the flutes will chip away or become smooth too quickly, reducing the life of your burr.
3. Keep The Carbide Burr On The Move
When using your carbide burr try not to keep it still for too long as this will prevent the burr from digging and jabbing into your material causing unsightly marks and roughness.Product Application:Can be used to finely process metal die cavity and mechanical chamfering, rounding, grooves, and clean up burrs of castings, flashings of forgings, welds of weldments.Mainly used for grinding channel impeller, cleaning tubes, finishing mechanical internal surface, enlarging holes, processing and engraving metal non-metal materials.Application Scenario Materials Metalworking Tungsten steel, stainless steel, aluminum, brass, etc. Woodworking Hardwood, softwood, composite materials, etc Plastic Processing ABS, polyurethane, polyethylene, etc. Fiberglass Processing Fiberglass-reinforced plastics, composite materials Ceramic Processing Ceramic, tiles Enamel Processing Metal, glass, ceramics 3D Printing Post-processing Printed plastics, resins Cutting and Carving Crafts Wood carving, jade carving, ivory carving, etc. Medical Device Manufacturing Stainless steel, titanium alloy, medical plastics, etc. Automotive Repair Steel, aluminum alloy, plastic components, etc.
Advantages:
* High hardness, wear-resistant and durable
* Anti-corrosion
* Smooth chip evacuation
* No dust pollution
* Tungsten carbide
* Sharp and wear-resistant