Why companies choose sheet and tube laser cutting by TM “Bulit”

We perform laser cutting as part of the customer’s manufacturing process — with consideration for the material, thickness, part geometry, and further use.

What we do:

  • We select cutting parameters according to the material, thickness, and part shape
  • We optimize the nesting of sheet metal, tubes, and profiles to reduce waste
  • We check that parts match the drawing and geometry requirements
  • We work with one-off parts, small batches, and serial orders

What you receive:

  • Accurate blanks for further welding, assembly, or production
  • Stable part quality in repeat and serial batches
  • Less manual rework after cutting thanks to a clean and controlled cut edge
  • A clear process: from file review to finished parts

TM “Bulit” is not just metal cutting — it is a controlled manufacturing result based on your drawing.

Typical laser cutting tasks clients bring to TM “Bulit”

  • Cutting sheet metal parts from drawings

    Clients contact us when they need accurate sheet metal blanks or parts cut from DXF, DWG, PDF drawings, or other technical files for production use.

  • Cutting tubes and profiles for assemblies

    Tube laser cutting is relevant when pipes, profiles, frames, or structural elements need repeatable geometry, prepared edges, holes, slots, or cutouts before assembly or welding.

  • Preparing a quote for one-off parts or batches

    Before quoting, we review the material, sheet thickness, tube diameter, wall thickness, quantity, cutting length, file quality, and requirements for further processing.

How to order sheet and tube laser cutting in Lviv

We work through a clear process: we review the task, clarify the material and file, calculate the cost, and perform cutting with result control.

How to order sheet and tube laser cutting in Lviv
  • Consultation and task analysis

    We clarify what needs to be cut: sheet metal, tubes, profiles, or separate parts. We review the material, thickness, geometry, and requirements for the finished blank.

  • Drawing review and pricing

    We accept DXF, DWG, PDF, drawings, or sketches. After reviewing the file, we calculate the cost, lead time, and, if needed, suggest nesting optimization.

  • Metal laser cutting

    We cut with parameters selected for the material and thickness. We control cut quality, geometry accuracy, and repeatability of parts within the batch.

  • Quality control

    We check that parts match the drawing, cut edge quality, and key dimensions before handing the order over to the customer.

  • Finished parts handover

    We prepare the order for pickup or delivery. You receive finished blanks for further welding, assembly, or production.

What you receive after sheet and tube laser cutting

The result for you is not just cut metal, but accurate blanks that can be passed on to production, welding, or assembly.

  • Accurate blanks for your task

    We manufacture parts from a drawing or file with consideration for the material, thickness, and geometry requirements.

  • Repeatability in production batches

    We maintain stable cutting parameters so the parts in the batch are consistent and meet manufacturing requirements.

  • Less material waste

    We optimize the nesting of sheet metal, tubes, and profiles to reduce unnecessary material costs.

  • Suitable for one-off and serial orders

    We can produce individual parts for repair or prototypes, as well as batches of blanks for regular production.

  • Cutting of sheets, tubes, and profiles

    We work with different types of metal blanks and select the cutting mode for the specific material and product shape.

  • Engineering review before production

    Before cutting, we analyze the file, geometry, and part requirements to avoid errors before the order is launched.

Preliminary laser cutting quote
Engineering quote

Preliminary laser cutting quote

Specify a few order parameters — we will assess the task and prepare an accurate quote after reviewing the drawing, DXF, or DWG file.

  • Sheets, tubes, and profiles
  • Cutting from drawings or files
  • DXF / DWG / PDF
  • One-off and serial orders
Completed manufacturing projects Engineering calculation for manufacturing tasks
Step 1 of 5

What needs to be cut?

What material needs to be cut?

Specify the sheet thickness or tube wall thickness

What is the approximate order volume?

Do you have a drawing or file?

Analyzing parameters

Preparing data for pricing

Checking blank type
Analyzing material and thickness
Assessing order volume
Checking drawing or file readiness
Pricing parameters have been prepared

Order data is ready to be sent to an engineer

Check the selected parameters below. After you submit the request, a TM “Bulit” engineer will clarify the details, review the file, and prepare an accurate cost calculation.

Estimated response time: during working hours after request review
The final cost is calculated after checking the drawing, material, thickness, part geometry, and order volume.
Final step

Leave your contact details — an engineer will prepare an accurate quote

For the final quote, we will check the material, thickness, part geometry, cut length, and drawing file.

No rough pricing without file review the cost is calculated after reviewing the drawing and order parameters
Faster with DXF / DWG a ready file helps assess the cut, geometry, and scope of work more accurately
Engineer response we will clarify technical details and suggest the most suitable production option

Technical capabilities of laser cutting

We work with sheet metal, tubes, and profiles — selecting cutting parameters according to the material, thickness, and part requirements.

Parameters
Maximum sheet thickness:
up to 18 mm
Metal types:
steel, stainless steel, aluminum, brass
Cutting accuracy:
±0.01 mm
Maximum sheet size:
3000 × 1500 mm
Tube and profile cutting:
diameter 20–200 mm
Material optimisation:
nesting planning to reduce waste
File formats for ordering:
DWG, DXF, PDF
Average lead time:
depends on volume, material, and current production workload
Comparison table:
Parameter
Laser cutting
Plasma cutting
Accuracy
High (±0.01 mm)
Lower accuracy, especially on thin parts
Edge quality
Cleaner cut edge and less need for rework
Additional processing is often required
Speed
Efficient for serial and precision parts
Suitable for simpler rough cutting
Thin parts
Well suited for thin sheet metal
Has more limitations in quality and accuracy

Laser cutting is optimal for parts where accuracy, repeatability, a clean cut edge, and minimal manual rework after cutting are important.

Need laser cutting based on your drawing?

Send us a DXF, DWG, PDF, or sketch — a TM “Bulit” engineer will check the material, thickness, part geometry, and prepare a quote for your manufacturing task.

See how drawings, files, and technical tasks are turned into accurate metal blanks for production.

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Quality control in laser cutting

We support the order from file review to finished part handover so the result matches the drawing and the manufacturing task.

Quality control in laser cutting
  • Check before production

    Before cutting, we analyze the file, material, thickness, and part geometry to reduce the risk of errors in the order.

  • Finished part control

    We check compliance with the drawing, cut edge quality, and key dimensions before handing the parts over to the customer.

  • Support for repeat orders

    We keep parameters from completed jobs so that future batches can be manufactured consistently and without unnecessary clarifications.

  • Optimization for production

    If needed, we suggest how to prepare the file or adjust the nesting to reduce material costs and processing time.

Frequently Asked Questions

Answers to common questions about quoting, technical requirements, manufacturing, equipment, and cooperation with TM “Bulit”.

Frequently Asked Questions
  • What materials can be laser cut?

    We provide laser cutting for steel, stainless steel, aluminum, and other metals after clarifying the material, thickness, and part requirements.

  • What is the maximum material thickness for laser cutting?

    We work with sheet metal up to 18 mm and tubes Ø20–200 mm. The final cutting feasibility depends on the material, thickness, part geometry, and cut edge requirements.

  • What accuracy can laser cutting achieve?

    Accuracy depends on the material, thickness, part shape, and order requirements. Before production, we check the drawing or file and select the cutting mode for the specific task.

  • How long does order completion take?

    Lead time depends on the volume, part complexity, material, and current production workload. After reviewing the drawing or DXF/DWG file, we provide the actual production timeline.

  • Can I order one part?

    Yes, we produce one-off parts as well as small batches and serial orders. For pricing, it is enough to send a drawing, file, or sketch with dimensions.

  • Can you help with drawings or nesting optimization?

    Yes, we can review the file, suggest improvements to part geometry, and offer nesting optimization to reduce material waste and avoid unnecessary costs.

  • How do I order laser cutting in Lviv?

    Send a DXF, DWG, PDF, drawing, or sketch through the form on the page or via messenger. A TM “Bulit” engineer will clarify the material, thickness, number of parts, and prepare a quote.

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Get a laser cutting quote based on your drawing

Get a laser cutting quote based on your drawing

Send us a DXF, DWG, PDF, or sketch — a TM “Bulit” engineer will check the material, thickness, part geometry, and prepare a quote for your order.

Submit a request — we will contact you