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Online Laser Cutting Service for
Custom Parts
Machined prototypes and production parts in as fast as 1 day.
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Certifications:

ISO 13485  |  IATF 16949

Laser Cutting
laser cutting
What is Laser Cutting?
Laser cutting uses high-energy laser beams to precisely cut metal materials, suitable for complex shapes and intricate cuts. This technology achieves high precision with minimal thermal impact, suitable for various materials, and is widely used in machinery, electronics, and furniture industries.
Capabilities
  • Laser Cutting
Laser Cutting
Maximum ThicknessPrecisionMaximum Cutting Area
Maximum Thickness: 15 mm (carbon steel), 10 mm (stainless steel)
Precision: ±0.1 mm
Maximum Cutting Area: 4000 mm x 2000 mm
laser cutting
Advantages of Laser Cutting
  • Smooth Cutting Edges
    Smooth Cutting Edges
    No need for subsequent processing, saving time and costs.
    01
  • Supports Complex Designs
    Supports Complex Designs
    Accommodates small batch customization to respond flexibly to market changes.
    02
  • Small Heat-Affected Zone
    Small Heat-Affected Zone
    Reduces material deformation, maintaining cutting precision.
    03
Materials
Full-Linking offers a wide variety of materials for CNC Machining including both metals and plastics. Please see the list for a sample of the materials we work with.
  • Aluminum
  • Stainless Steel
  • Steel

7075

6060

One of the strongest aluminium alloys, often used in aerospace and military applications due to its superior strength-to-weight ratio.

Commonly utilized in architectural applications, providing good extrudability and surface finish.

If you require a material not in this list, please do get in touch as it is likely we can source it for you.
Laser Cutting

316L

304

Offers enhanced corrosion resistance, particularly against chlorides, making it suitable for marine environments and chemical processing.

General-purpose stainless steel known for its good corrosion resistance, widely used in food and beverage processing.

If you require a material not in this list, please do get in touch as it is likely we can source it for you.
Laser Cutting

S355J2G3

S235JR

High-strength steel suitable for heavy construction and engineering projects.

A structural steel grade known for good weldability, commonly employed in construction and manufacturing.

If you require a material not in this list, please do get in touch as it is likely we can source it for you.
Laser Cutting
What Finishes are Available for Laser Cutting?
Finishing processes not only improve the appearance of parts but also enhance their durability, resistance to wear and corrosion, and overall functionality. Proper finishing can significantly extend the lifespan of components and improve their performance in various applications.
  • Edge Finishing

    Description: The process of smoothing and refining the edges of laser-cut parts to eliminate sharp edges.

    Notes: Can be performed using grinding, sanding, or specialized edge finishing tools.

    Final Result: Safe, smooth edges that improve the product's handling and appearance.

    Edge Finishing
  • Anodizing

    Description: An electrochemical process that enhances the surface properties of aluminum parts after laser cutting.

    Notes: Increases corrosion resistance and surface hardness while providing a decorative finish.

    Final Result: A durable and visually appealing surface that withstands wear and tear.

    Anodizing
  • Coating

    Description: Application of a protective layer to enhance the durability and aesthetics of laser-cut components.

    Notes: Options include powder coating, liquid paint, and specialized coatings.

    Final Result: An attractive finish that offers protection against environmental factors.

    Coating
  • Cleaning and Degreasing

    Description: A cleaning process that removes any residue or contaminants from the laser-cut parts.

    Notes: Important for ensuring the surface is clean before any finishing treatments.

    Final Result: A pristine surface that is ready for further processing or coating.

    Cleaning and Degreasing
Our Equipment Display
  • 3D Printing Workshop
    3D Printing Workshop
  • CNC Workshop
    CNC Workshop
  • Sheet Metal Fabrication Workshop
    Sheet Metal Fabrication Workshop
  • Die-Casting Workshop
    Die-Casting Workshop
  • Injection Moulding Workshop
    Injection Moulding Workshop
  • Quality Inspection Department
    Quality Inspection Department
Related FAQs
Laser Cutting FAQ
FAQWhat is Sheet Metal Fabrication?
Sheet metal fabrication refers to the process of cutting, stamping, bending, and welding metal sheets into the desired shapes.
FAQWhat materials are suitable for sheet metal fabrication?
Commonly used materials include steel, stainless steel, aluminum alloy, and copper. When selecting materials, factors such as strength, corrosion resistance, and processing difficulty should be considered.
FAQWhat are the main processes in sheet metal fabrication?
Common processes include laser cutting, stamping, bending, and welding, which are suitable for precision processing of various metal parts.
FAQHow is the precision of sheet metal fabrication ensured?
High precision CNC equipment and precise mold design can ensure the high accuracy and consistency of parts.
FAQHow can material waste in sheet metal fabrication be minimized?
Optimizing part layout, using appropriate material thickness, and implementing efficient process flows can significantly reduce material waste.
FAQWhat are the common application areas for sheet metal fabrication?
Sheet metal fabrication is widely used in electronic device enclosures, automotive parts, building structures, and machinery.
FAQHow can common defects in sheet metal fabrication be avoided?
Common defects include warping, cracking, and surface roughness. By optimizing process parameters, selecting suitable materials, and designing molds effectively, these defects can be avoided.
FAQHow is consistency in parts ensured in sheet metal fabrication?
Strict quality control, the use of standardized molds, and precise process flows ensure the consistency of each part's dimensions and shapes.
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