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    • Welding machines
    • Laser cutting machines
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    • Plasma cutting machines
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Bielda B12030 fiber laser cutting machine

  • Laser source
    Raycus
  • Maximum acceleration speed
    1.2 G
  • Machine weight
    3750Kg
MAIN CONFIGURATION
Laser Source Raycus
Chassis Robust welded plate
Traverse Aluminium, light and precise
Transmission system Dual precision system with rack and pinion mechanism
Machine type Half closed model
Speed reducer French Motoreducer
Engine Japan YASKAWA (X:1.0KW Y:1.0KW Z:0.4KW)
Rail guide HIWIN
Rack and pinion YYC
Laser head Ray Tools with auto focus
Chuck Front/side chuck: pneumatic
Water cooler HANLI
Electrical components French Schneider
Electric proportional valve Japan SMC
Dust and mist removal system Exhaust fan with centrifugal fan 1.5 Kw
Control system Tubepro FSCUT 3000S
File format recognition system IGS
Optical configuration Multi-level drilling process
Very fine cutting process
Anti-scratch protection function
Safety configuration Contour recognition
Automatic pipe inspection function
Anti-collision function rear chuck and rollers
Abnormal laser alarm
Abnormal cutting alarm
Abnormal water cooler alarm
Open the door to stop cutting
Anti-collision detection function
Safe processing monitoring
Intelligent visual light reminder function
Engine power Front chuck: 2 Kw
Rear chuck: 1.5 Kw
Power supply:1.5 Kw
Spare parts 10 nozzles; 6 protective lenses
TECHNICAL PARAMETERS
Work surface 1500*3000mm
Machine size 8460*3300*2000mm
Table dimensions 12000mmx3000mm
Machine weight 3700Kg
X/Y axis positioning accuracy ±0.03mm
X/Y axis repeat positioning accuracy ±0.02mm
Maximum running speed 100m/min
Maximum acceleration speed 1.5 G
Maximum load on the work table 800kg
Maximum pipe weight T220: 300Kg 30Kg/m
Pipe cutting system specifications Round pipe: Φ20-Φ220mm / Square pipe: Φ20-Φ220mm Rectangular pipe: circumscribed circle diameter≤240mm
Power supply Three-phase, 380V, 50/60Hz
Welded plate chassis

The chassis is made of thick metal plates welded and then heat-treated so it becomes more stronger, harder to deform and has a longer service life. longer

Stable crossbar

Made of cast aluminium, ensures precision and very good stability.

Newly designed head protection housing

Suitable for cursor observation, facilitates heat dissipation, easy access for cleaning and maintenance, prevents burning of air passages.

Purge system

Partitioned purge system combined with exhaust upper and lower

Purge system

The Bielda laser machine adopts the CypCut control system, featuring intelligent diagnostics, multi-process operation, three-stage drilling, functional laser control, adaptive workpiece side search, automatic corner deceleration, flycut, interchangeable worktable, mechanical compensation, accuracy.

The Bielda laser machine adopts the CypCut control system, featuring intelligent diagnostics, multi-process operation, three-stage drilling, functional laser control, adaptive workpiece side search, automatic corner deceleration, flycut, interchangeable worktable, mechanical compensation, accuracy.

Oxygen cutting

During oxygen cutting, the material is heated to melting temperature by the laser beam using gas pressures between 0.4 and 10 bar. This process is used to cut OL sheets. With thicknesses between 0.8mm and 30mm

Depending on the material and its quality, different industrial gases are used at different pressures, chosen according to the cutting speed and quality selected for it.

Cutting with Bielda laser machines is extremely precise. In addition to sheet materials, pipes and metal tubes can be cut with our laser machines.

Blackboard, pickled, galvanised or stainless steel sheet, aluminium or other non-ferrous materials with thicknesses from 0.8mm to 30mm can be successfully cut without further processing. Depending on the material and its quality, different industrial gases are used at different pressures, chosen according to the cutting speed and quality selected for it.

Nitrogen cutting

Nitrogen cutting is a fusion cutting process resulting in a high precision cut that does not require further machining. The gas is used at pressures up to 20 bar. This process is used to cut galvanized, stainless steel and other non-ferrous metals.

Cutting with laser technology has a very low thermal impact on thin materials, which can be cut without the need for other mechanical operations during a technological process, or before painting.

The cutting process itself, compared to traditional solutions, is clean and has very little impact on the environment, or the human factor. The ventilation and air filtration solutions offered make it easy to install this equipment even in the busiest environments. The user interface and working with the machine is optimised for maximum ergonomics and efficiency.The multitude of supported CAD formats as well as the possibility to make saves, corrections or even complex drawings from scratch directly on the machine interface support maximum production efficiency.

Importing, saving and exporting files is also facilitated by the possibility of integrating the machine into the user LAN, the machine accepts formats from all established CAD programs: .dxf , dwg, Ai, AutoCad, Corel Draw. The solutions offered by the machine software facilitate the operator’s work as much as possible by generating nesting plans, predefined settings, ergonomically organized layout.

The ability to generate common sides in serial drawings provides low cutting time and maximum efficiency of the whole process.

CONSUMABLE ESTIMATED TIME OF USE
Protective glass 500 ore
Duza 500 ore
Ceramic ring 4000 ore
Lentila focus 4000 ore

Users can graphically view real-time data dynamics via the browser, allowing remote diagnosis and maintenance of equipment. Users can use mobile phones, PDAs and other devices for real-time display of the monitoring interface and text mode to change data values, acknowledge alerts and so on.

The system has the function of an “expert system” to perform/assist product positioning, flow tracking tracking interrogation, remote fault diagnosis and interrogation of stored equipment fault data. Data is transmitted to the client, other monitoring points and the server via the Internet/5G network.

In CLOUD it intelligently collects equipment status and failure information for analysis, calculates production cost and maintenance costs according to a certain algorithm and obtains a high quality cost performance scheme of the product design, which saves production costs for the enterprise.

The CLOUD has multiple functions such as remote diagnostics and maintenance, redundancy, real-time historical data recording, scheduling, formulation, video and audio functions. It has a multitude of ere manager options and scrinting functions, establishes connections with many standardized interfaces and can efficiently connect with the plants MES system. With the advent of the 5G era, the CLOUD will combine laser equipment and artificial intelligence with 5G technology and will be widely used in cloud computing, big data and edge computing. It will make advanced technology and complex laser equipment much and easier to use, and provide customers with faster global remote diagnostic services.

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1000 1500 2000 3000 4000 6000 8000 10000 12000 15000
Carbon steel 12 14 18 22 25 30 35 40 45 80
Stainless steel 6 8 10 12 14 25 30 40 50 70
Aluminium 4 5 8 12 16 25 30 35 50 60
Brass 4 5 6 8 10 14 16 18 20 25
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  • BIELDA TEHNIC S.R.L.
  • Sediul Resita, str. Retezat nr. 27,
  • Ap. 1, jud. Caras-Severin
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