Custom D28 single layer nozzle for laser cutting Manufacturer, Factory

Product Description

Main Characteristics

Performance Highlights

  • Precision: High concentricity ensures the laser beam is precisely coaxial with auxiliary gas flow, achieving cutting accuracy of ±0.01mm.
  • Durability: Made from Pure Red Copper for superior thermal conductivity, preventing overheating and deformation.
  • Chrome-Plated: Enhances surface hardness, prevents slag adhesion, and significantly prolongs service life.
  • Power: Optimized for high-power fiber lasers ranging from 0 to 80 kW.
Materials & Compatibility

Applicable Materials

Ideal for precision cutting of various metal sheets:

  • Stainless Steel
  • Carbon Steel
  • Copper & Brass
  • Aluminum Alloys

Compatible Equipment

Designed for professional industrial laser heads:

  • Raytools BM Series
  • Precitec WSX Series
  • Han's Laser
  • Bystronic & Trumpf compatible models
Laser Cutting Nozzle Types

Nozzle Selection Guide

Single-layer: Cost-effective, best for thin plates (<5mm) and non-oxidation cutting.

Double-layer: Preferred for thick plates (>10mm) and oxidation cutting; reduces slag accumulation and improves cross-section quality.

Frequently Asked Questions
What is the cutting accuracy of these nozzles?

Our nozzles are engineered for extreme precision with a concentricity accuracy of ±0.01mm, ensuring minimal deviation and high-quality edge finishes.

Which material is used for manufacturing?

The main body is constructed from pure red copper for excellent heat dissipation. Many models also feature chrome plating to prevent slag adhesion and increase surface hardness.

Can these nozzles handle 60kW or 80kW lasers?

Yes, our high-power series is specifically designed to handle fiber lasers from 0kW up to 80kW, making them suitable for the most demanding industrial applications.

Should I choose a single-layer or double-layer nozzle?

Single-layer nozzles are typically used for nitrogen cutting of stainless steel and aluminum. Double-layer nozzles are used with oxygen for cutting carbon steel to improve slag discharge on thicker plates.

How does aerodynamic optimization improve cutting?

The design increases gas mass flow rate, which accelerates the discharge of molten slag and prevents secondary adhesion on the cut surface, especially in thick plate processing.

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