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Laser Cutting

Laser Cutting

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    Metal laser cutting — precision cutting of steel, stainless steel and aluminum.

    ELS Systems performs laser cutting of sheet metal to manufacture individual parts, blanks, and kits for further production. The technology suits both single-unit products and series batches, where stable geometry and a repeatable result matter.

    Cutting is carried out according to the customer’s drawings, DXF and DWG files, 3D models, and other technical documentation. If the task requires additional engineering work, ELS Systems’ own design and engineering department can join the project.

    What can be made with laser cutting

    Laser cutting is used to manufacture parts and blanks of various shapes and purposes. Depending on further use, these can be:

    • flat parts and plates;
    • brackets and structural elements;
    • housing blanks;
    • flanges and mounting elements;
    • machine and mechanism components;
    • parts for subsequent bending, welding, or machining;
    • custom products according to the customer’s drawings.

    One of the advantages of laser cutting is the ability to manufacture kits of blanks for the next stages of production. After cutting, individual elements can be passed on to sheet bending, welding, machining, painting, or assembly within ELS Systems’ production capabilities.

    Equipment for laser cutting

    ELS Systems has a fleet of laser equipment with different power ratings and technological capabilities. This lets us select equipment according to the material, sheet thickness, part geometry, and order volume.

    S-Laser F1530, 6 kW

    A machine with a 1500 × 3000 mm working field, equipped with a MAX Photonics 6 kW source, FSCUT control system, and CypCUT software.

    Stated positioning accuracy along the X/Y axes is ±0.03 mm, repeatability ±0.02 mm.

    S-Laser F1530, 3 kW with pipe-cutting attachment

    Equipment for laser cutting sheet metal with an additional pipe-processing capability. This allows tasks where a single product combines sheet and pipe elements.

    TSK Laser G 1.5 kW LaserG153015ra

    A fully enclosed CNC machine with an exchange table. This design allows sheet loading and unloading to be organized separately from the cutting area.

    The machine supports DXF and DWG files. Depending on the installed source, the equipment’s power can range from 1.5 to 6 kW.

    Combining equipment with different characteristics lets us select the technology for a specific production task, rather than using one type of equipment for all kinds of work.

    Steel, stainless steel, aluminum, and non-ferrous metals

    ELS Systems performs laser cutting of carbon and stainless steel, aluminum, and other metals according to the capabilities of the equipment.

    Cutting parameters depend on the material’s properties and thickness. During order preparation, we take into account the metal grade, sheet thickness, product geometry, and cut quality requirements.

    This allows the appropriate equipment and process parameters to be determined in advance for a specific part.

    Cutting from DXF, DWG, a drawing, or a technical specification

    Laser cutting requires a digital contour of the future part. DXF and DWG are the most convenient formats for starting production, but if needed, ELS Systems also works with drawings, 3D models, and other technical documentation.

    If a ready-made cutting file is not available, but a drawing, sketch, or technical specification is, this information can be passed to specialists for review.

    ELS Systems’ own design and engineering department can prepare or refine the documentation needed for manufacturing.

    Laser cutting for single-unit and series production

    Laser cutting can be a standalone production operation or the first stage of manufacturing a finished product.

    Single units and small batches can be relevant for equipment repair, manufacturing custom parts, prototypes, or replacing individual components.

    Series production allows identical parts to be regularly obtained according to agreed documentation and in the required quantity.

    For industrial customers, ELS Systems can organize not only laser cutting, but also further manufacturing of parts and assemblies.

    Laser cutting as part of integrated production

    Laser cutting is often just one stage of the production process. After cutting, blanks can go through sheet bending, welding, machining, painting, and assembly.

    ELS Systems has its own production facility and can combine different technologies within a single project. This is especially relevant for B2B customers who need finished parts, components, or assemblies, not just cut blanks.

    Our own design and engineering department allows engineering work to be involved even before the product goes into production.

    From drawing to finished part

    Before starting an order, specialists analyze the technical documentation, material, sheet thickness, part geometry, and required quantity of products.

    Based on this data, the appropriate equipment and cutting technology are determined. If additional operations are needed after laser cutting, a sequential production route is formed to obtain the finished product.

    This approach allows us to account not just for the parameters of a single operation, but the entire manufacturing cycle of the part.

    What determines the price of laser cutting

    The cost of laser cutting depends on several parameters:

    • the material and its thickness;
    • the number of parts;
    • contour complexity;
    • cut length;
    • the number of holes and other elements;
    • the total volume of work;
    • the need for further production operations.

    That’s why the cost is calculated individually for each order.

    For an accurate quote, it is enough to send a DXF, DWG, drawing, or other available technical documentation, and indicate the material, sheet thickness, and required quantity of parts.

    How to order metal laser cutting

    To get a quote, send a DXF or DWG file, a drawing, a 3D model, or a technical specification. Additionally, indicate the material, sheet thickness, and required quantity of parts.

    ELS Systems specialists will analyze the source data, determine the appropriate equipment and processing technology, and prepare a manufacturing proposal.

    You can order a single part, a series batch, or integrated manufacturing in which laser cutting is just one of the production stages.

    Send us your technical specification — we’ll determine the optimal manufacturing method and prepare a quote.

    Related Services

    Laser Cutting is often combined with other production operations — everything can be ordered within a single production cycle:

    Frequently Asked Questions

    What material thickness can you cut?
    It depends on the material and machine — laser power ranges from 1.5 to 6 kW; exact thickness is confirmed after receiving the cutting file.
    What file format do you need for cutting?
    DXF or DWG work best; without a ready file we also accept drawings, sketches or a technical task.
    What’s your cutting precision?
    Positioning accuracy of ±0.03 mm and repeatability of ±0.02 mm on the S-Laser F1530.
    Can you cut tubes, not just sheet metal?
    Yes, we have a machine with a tube-cutting attachment for parts combining sheet and tube elements.

    Equipment for this service

    Examples of completed work

    • Manufacturing Welded Enclosures for Switchgear Equipment

      Manufacturing Welded Enclosures for Switchgear Equipment

      Manufacture a batch of welded enclosures for switchgear equipment per customer drawing — 120 pcs.
      • Material galvanized steel 2 mm
      • Equipment TSK Laser G-Series Sheet Laser Cutting Machine, 1.5 kW, Enclosed with Exchange Table (LaserG153015ra)
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