beveling machines plasma cutting equipment
Plasma beveling machine
8 axis cnc plasma cutting machine.
beveling machines plasma cutting equipment.

Plasma Beveling machine in the realm of modern industrial fabrication, precision and efficiency stand as pillars of success. One technology that has revolutionized the cutting process, particularly in the context of beveling, is the Plasma Beveling Machine. This article explores the significance of Plasma Beveling Machines, their applications, and the factors influencing the beveling process. Click here

Plasma Beveling Machines have emerged as indispensable tools in modern fabrication processes, offering precision, efficiency, and versatility. By understanding the factors influencing beveling and selecting the right equipment through consultation, industries can harness the full potential of plasma cutting technology to meet the demands of complex projects and drive innovation in manufacturing.

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Plasma Beveling machine Technical Parameters

Product Name

Large Diameter Round Steel Pipe CNC Plasma Cutting Machine

The Outer Diameter Of Round Steel Pipe

50~1000mm(Customiized)

Length Of Round Steel Pipe

12m(Customized)

Cutting Power Source

Plasma And Flame Cutting

Plasma Cutter Soruce

200A LGK Huayuan Brand(Optional)

Bevel Angle

±60º

Max Loading Capacity For Roller Bed

3000KGS

Rotary Clamp

Three Jaws

Controller

Shanghai Fangling

Guide Rails

Taiwan Linear Squre Guide Rails

Drive Motor

China Servos

Rated Power

30KW

Net Weight

5000KGS

Voltage

AC380V/50Hz,Three Phase

1. Professional for cutting large diameter round steel pipes.It is suitable for cutting the round steel pipe whose diameter is
more than 600mm, or the wall thickness is more than 10mm.
2. Roller bed, can support very big steel pipe.
3. Can cut,bevel, slot cut,shrim joint cut,saddle cut on round steel pipes.
4. Suppoort Autocad and Tekla three-dimensional model.
5. Application: Pipe splitting,pipe optimiztion,node expansion,left and right replacement.

Plasma Beveling machine Advantage

  • Speed and Efficiency: Its high power output allows the 100 Amp plasma cutter to complete cutting tasks at a faster rate, enhancing production efficiency.
  • Versatility: Suitable for various types of metal materials, including steel, aluminum, copper, etc., it has a wide range of applications.
  • Accuracy: Advanced control systems ensure precision during the cutting process, enabling the cutter to handle complex cutting requirements.
  • Energy Efficiency and Environmental Friendliness: The high efficiency ratio and precise control system reduce energy consumption during the cutting process, minimizing environmental impact.
Controller with THC
Plasma torch head
hypertherm 105 plasma cutter Source

Controller With THC

Experience precision cutting with our 4×8 plasma table controller featuring THC (Torch Height Control). Achieve consistent cuts, even on uneven surfaces, as the THC adjusts the torch height automatically. Maximize efficiency and quality in your projects with this advanced controller.

Plasma Torch Head

The plasma cutting machine’s cutting torch is a vital component, utilizing arc discharge to create plasma that melts metal swiftly. It comprises elements like nozzles, electrodes, and cooling systems, working with the control system for precise metal cutting.

Hypertherm 125 Plasma Cutter Source

The Hypertherm Powermax 125 Plasma Cutter stands out as a reliable source for precise metal cutting. Renowned for its efficiency and versatility, it’s a top choice in metal fabrication for its advanced technology and durability.

Plasma Beveling machine Application

 

Applies in cars, motorcycles, pressure vessels,chemical machinery, nuclear industry, general machinery, engineering machinery,steel structure, shipbuilding and other industries

Working material:Stainless steel/Iron sheets, Aluminum sheets, Galvanized sheets, Titanium

tube metal samples

Plasma Beveling machine

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Plasma Beveling machine FAQ

Plasma cutting, a thermal cutting technique, finds extensive application in the cutting or engraving of various materials, particularly metals. Renowned for its rapidity, it stands as one of the quickest cutting methods available, delivering high-quality and precise cuts while ensuring minimal material degradation.

While plasma cutting offers numerous advantages compared to alternative fabrication techniques, it does entail several drawbacks, such as: Limited applicability to conductive materials exclusively. Suboptimal performance for metals exceeding 150mm in thickness (approximately 6 inches). Potential risks of bright flashes during cutting, which may pose hazards to the eyes.

Given the potential for serious injury from high voltage, it is imperative to prioritize safety when using plasma cutting equipment. This entails both the proper setup and operation of the equipment, along with the use of appropriate personal protective gear and adherence to safety protocols.

When comparing plasma cutters to torches:
– Plasma is versatile, capable of cutting almost any metal type, whereas oxyfuel torches are limited to mild steel and wrought iron, provided they are free of rust or paint.
– Plasma is effective for cutting both thick and thin metals, offering greater versatility compared to torches.
– Plasma is considered safer to use than torches.
– Plasma cutting is faster in operation than torch cutting.
– Operating costs are lower for plasma cutting compared to torch cutting.

Plasma cutting proves efficient for both thin and thick materials. Portable torches typically handle steel plates up to 38 mm (1.5 in) thick, while advanced computerized torches can slice through steel up to 150 mm (6 in) thick.

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