Capabilities

Thickness:
Customized based on customer's drrawing

SIZE:

Customized based on customer's drrawing

OEM/ODM
Accept
Surface treatment:
Electric plating,powder coated,sand blasting,lacquer

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PRODUCT DETAIL

JCEN combines cutting-edge technology with decades of industry experience to offer:

Scalability: Supports projects from single prototypes to mass production.
Sustainability: Uses energy-efficient lasers and recyclable assist gases.
For precision-critical applications, JCEN’s laser cutting services ensure reliability, innovation, and unmatched technical support.

Laser Cutting Process Overview

Laser cutting is a subtractive manufacturing technology that uses a focused high-power laser beam to vaporize, melt, or burn materials into precise shapes. Here’s how it works:

  1. Laser Generation: A pulsed laser beam is generated and directed through optical components (e.g., mirrors and lenses) to focus energy on the material surface.
  2. Material Interaction: The concentrated heat (up to thousands of degrees Celsius) instantly melts or vaporizes the material, creating a narrow kerf. Assist gases (e.g., nitrogen or oxygen) blow away debris, ensuring clean edges and minimizing thermal distortion.
  3. CNC Control: A computer-controlled system guides the laser head along predefined paths, enabling complex geometries with micron-level accuracy.

Key Advantages:

High precision (±0.1mm tolerance) for intricate designs.
Compatibility with diverse materials: metals (steel, aluminum
Minimal post-processing due to smooth, burr-free edges.

JCEN’s Competitive Edge in Laser Cutting

Equipped with 5kW fiber lasers for high-speed, thick-metal cutting.
Utilizes AI-powered software for real-time adjustments, minimizing waste.
Quality Assurance:

ISO 9001-certified processes with rigorous pre-cut inspections.
Delivers consistent results for industries like aerospace, automotive, and consumer electronics.
Customization Capabilities:

Rapid prototyping (24-hour turnaround for small batches).
Expertise in micro-cutting (down to 0.05mm precision) for medical device components.

 

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