Laser Asphalt Blade for Cutting Asphalt

Product Details
Customization: Available
Blade Type: Continuous Boundary
Manufacturing Process: Brazing
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  • Laser Asphalt Blade for Cutting Asphalt
  • Laser Asphalt Blade for Cutting Asphalt
  • Laser Asphalt Blade for Cutting Asphalt
  • Laser Asphalt Blade for Cutting Asphalt
  • Laser Asphalt Blade for Cutting Asphalt
  • Laser Asphalt Blade for Cutting Asphalt
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Basic Info.

Model NO.
SZJ
Application
Stone
Transport Package
White Box
Specification
SGS
Trademark
DAVAM
Origin
China
HS Code
8202390000
Production Capacity
50000PCS/Year

Packaging & Delivery

Package Size
33.00cm * 33.00cm * 11.00cm
Package Gross Weight
15.000kg

Product Description

Laser Welded Diamond Saw Blade, laser asphalt blade
Laser welding technology enables the manufacturing process to be highly automated,resulting in greatly improved stability and stronger adhesion of the diamonds to the metal substrate.The result is improved efficiency ,cutting life and operator safety.
Designed for cutting asphalt and abrasive mterials with maximum performance and life.
Slanting drop segments provide under-cut protection.for cutting asphalt and asphalt over  concrete.
, laser asphalt blade for hard materials, such as: Marble, granite, concrete, brick etc. Fast cutting and long life., dry or wet. Different hold reduce the sound efficient.
Laser Welded Saw Blades: Overview and Key Information

1. What is a Laser Welded Saw Blade?
A laser welded saw blade uses a high-precision laser beam to fuse the cutting teeth (often carbide or diamond-tipped) to the blade body. This method replaces traditional techniques like brazing or riveting, resulting in a stronger, more durable bond.

2. Advantages of Laser Welding

Strength & Durability: The laser creates a metallurgical bond without filler materials, reducing weak points.

Precision: Minimal heat distortion ensures teeth alignment remains accurate.

Thinner Kerf: Allows for faster, cleaner cuts with less material waste.

Longevity: Resists tooth loss even under high stress or heat.

3. Common Applications

Metal Cutting: Carbide-tipped blades for steel, aluminum, or stainless steel.

Woodworking: Precision blades for fine carpentry or composite materials.

Specialized Industries: Aerospace, automotive, or construction for high-performance needs.

4. Considerations When Choosing

Material: Match the blade to the workpiece (e.g., carbide for metal, diamond for masonry).

Tooth Design: Variable tooth geometries (ATB, TCG) for specific cuts.

Size: Ensure compatibility with your saw's arbor and diameter requirements.

Cost: Laser blades are often pricier upfront but offer long-term savings via extended lifespan.

5. Maintenance Tips

Cleaning: Remove pitch/residue regularly to maintain performance.

Sharpening: Use specialized services for carbide teeth; avoid overheating.

Storage: Keep blades dry and protected to prevent corrosion.


6. Safety Notes

Always wear PPE (goggles, gloves) and follow saw manufacturer guidelines.

Ensure the blade is rated for your saw's RPM to avoid accidents.

7. Environmental Impact
Laser welding reduces material waste and energy use compared to traditional methods, making it a greener choice.

Conclusion
Laser welded saw blades excel in precision, durability, and efficiency, making them ideal for demanding applications. While they may cost more initially, their longevity and performance often justify the investment for professionals and serious DIYers.

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