[LOADING EQUIPMENT DATABASE...]
[LOADING EQUIPMENT DATABASE...]
BLM Group
LT8.20 Lasertube
4kW Fiber
Product image not available.
Visit manufacturer for official photos.
Product images and specifications are property of their respective manufacturers. LaserSpecHub aggregates publicly available data for comparison purposes only.
4kW Fiber cutting Machine
4kW
Italy
2024
Interested in the BLM Group LT8.20 Lasertube?
Get pricing and availability from verified suppliers
Fiber laser tube cutter with 3D tilt cutting head (±45°) for chamfers and weld preparations in thick-walled tubes up to 40 kg/m.
Use this LT8.20 Lasertube 4kW page for tube-laser searches where profile range, 3D bevel cutting, bundle loading, programming workflow, and BLM service support must be validated.
Confirm LT8.20 Lasertube naming, 4kW source package, profile diameter, wall thickness, tube length, tube weight, bundle loading, unloading, and chuck configuration.
Validate 3D head capability, bevel angle, weld-prep samples, seam detection, collision limits, and programming workflow on your actual tube geometry.
Do not compare LT8.20 directly with 3015 sheet lasers; compare it against tube-laser alternatives with the same automation and profile requirements.
Estimated range is a planning band. Confirm the final quote against included software, optics, safety package, installation, freight, training, and service terms.
Use $400000-550000 as the research range, then normalize every supplier quote to the same configuration.
Ask for sample results, service response time, warranty labor terms, consumable pricing, facility requirements, and acceptance criteria before approval.
Compare one same-power alternative, one lower-cost alternative, and one premium support option before treating the first quote as market price.
4kW LT8.20 Lasertube route for tube and profile workflow validation
LT8.20 Lasertube comparisons should confirm tube diameter, profile range, loading length, 3D head, seam detection, programming, sample tube geometry, automation, training, service response, and installed cost.
Best For: Tube fabricators validating BLM 3D bevel cutting, bundle loading, profile range, and programming workflow before comparing against flat-bed lasers.
| Brand | BLM Group |
| Model | LT8.20 Lasertube |
| Laser Type | Fiber |
| Power Output | 4 kW |
| Control System | Siemens |
| Cooling Type | Water |
| Country of Origin | IT |
| Release Year | 2024 |
| Warranty | 2 years |
| Price Range | $400,000 - $550,000 |
Maximum material thickness and cutting speeds for the BLM Group LT8.20 Lasertube
| Material | Max Thickness | Speed @5mm | Speed @10mm |
|---|---|---|---|
| Titanium | mm | - | - |
Find more machines matching these specifications
Use this block to qualify price, fit, operating requirements, and shortlist alternatives before requesting quotes.
Confirm freight, installation, training, chiller, fume extraction, assist gas setup, and spare lens/nozzle starter kits before comparing final supplier quotes.
Tube fabricators validating BLM 3D bevel cutting, bundle loading, profile range, and programming workflow before comparing against flat-bed lasers.
Material capability is not fully published. Request a test-cut report for your thickest production material.
Check thickness parametersBudget for protective window replacement, nozzle wear, chiller service, extraction filters, and periodic source/cutting-head inspection.
These mid-range alternatives offer comparable specifications from other manufacturers.
7 models available — sorted by power output
Common questions about the BLM Group LT8.20 Lasertube
The BLM Group LT8.20 Lasertube features a 4kW fiber laser, suitable for metal cutting and sheet processing.
Contact suppliers for pricing, lead times, and detailed specifications for the BLM Group LT8.20 Lasertube 4kW.
LaserSpecHub connects you with verified equipment suppliers worldwide
Keep model-specific price queries on the model page, then use the workflow links to validate power, speed, time, gas use, and cost.
Model price authorityModel-specific price range, specifications, alternatives, and inquiry path.
Pick fiber, CO2, or solid-state based on material, wavelength, and budget.
02Laser Power RecommenderTranslate material and thickness needs into a viable power range.
03Workspace Size MatcherMatch part dimensions and nesting needs to table size.
04Assist Gas SelectorChoose gas type, pressure, and purity before comparing systems.
05Chiller Capacity CalculatorSize support equipment once the laser class is known.