The Φ10-Φ40mm FX28 Welded Pipe Making Machine is a specialized production line designed for the efficient manufacturing of welded pipes, particularly square pipes and special-shaped pipes. This machine is ideal for producing pipes with a diameter range of 10 mm to 40 mm, making it versatile for various industrial applications. The material of steel strip is general carbon steel Q195,Q235,16Mn and etc hot rolled and cold-strip steel.
Production Capacity:
Diameter Range: The machine can produce pipes with diameters from 10 mm to 40 mm, accommodating a variety of specifications to meet different customer needs.
Pipe Shapes: It is capable of manufacturing not only round pipes but also square and special-shaped pipes, making it suitable for diverse applications in construction and manufacturing.
Welding Technology:
High-Frequency Welding: The FX28 machine utilizes high-frequency welding technology, which ensures strong and consistent weld seams. This method is particularly effective for thin-walled pipes and provides excellent weld quality.
Efficiency: The welding process is designed for high-speed operation, allowing for increased production rates without compromising quality.
Material Compatibility:
The machine is primarily designed for use with low carbon steel, which is commonly used in various applications due to its excellent weldability and strength.
Automation and Control:
The FX28 machine features an advanced control system that allows for precise monitoring and adjustments during the manufacturing process. This includes automated settings for different pipe sizes and shapes, enhancing operational efficiency.
Compact Design:
The machine's compact design makes it suitable for facilities with limited space while still providing high production capabilities. This is particularly beneficial for small to medium-sized manufacturers looking to optimize their production lines.
Safety Features:
The design incorporates multiple safety mechanisms, including emergency stop functions and protective covers, ensuring safe operation during production.
Item | Specifications |
Material | General carbon steel Q195,Q235,16Mn and etc |
Width | 32~120mm |
O.D. | Φ600mm~Φ1300mm |
I.D. | Φ450mm~Φ550mm |
Max. coil weight | 2000kgs |
Round pipe diameter | Φ10mm~Φ40mm |
Round pipe thickness | δ0.5mm~1.5mm |
Square pipe size | 8×8~30×30mm |
Square pipe thickness | δ0.5mm~1.2mm |
Rectangular pipe size | 5×10~20×40mm |
Rectangular pipe thickness | δ0.5mm~1.2mm |
Rolling speed | 30~100m/min. |
Pipe length | 4~8M |
Production mode | continuous |
Square pipe production mode | round changed into square |
Welding method | high frequency induction welding,100KW |
Total power consumption of the production line | 240KW,Voltage:380V/50HZ |
Note: the above are standard parameters, customized is accepted.
Raw material (steel strip) → uncoiling → shearing and end welding → material accumulating → non-power leveling → mill-forming → high-frequency welding → removing burrs outside of weld seam → cooling → sizing → roughly straightening → fixed length cutting → finishing tub
The FX28 high efficiency welded pipe mill line has a wide range of applications in various industries. Some of the common applications include:
Oil and gas industry
Construction and infrastructure
Water and wastewater systems
Mechanical and engineering applications
Automotive industry
Manufacturing and fabrication
Infrastructure and utilities
HVAC and plumbing systems
Packaging:
All parts of the FX28 high efficiency welded pipe mill line are fixed inside container by steel wires and special PET straps, in order to make sure all parts will not move during transportation and avoid any kinds of damage of machine and container.
Shipping:
Sea Freight: The FX28 high efficiency welded pipe mill line is often shipped via ocean freight, especially for international transportation. The equipment is securely loaded into shipping containers or flat racks, which are then loaded onto cargo vessels. This mode is suitable for long-distance shipping and can accommodate larger and heavier welded pipe mill lines.
Air Freight: When there is a need for fast delivery or for shipping smaller or lighter welded pipe mill lines, air freight can be used. The equipment is packed and loaded onto aircraft for transportation. Air freight is typically more expensive than ocean freight but offers quicker transit times.
Q1: What is an HF welded pipe mill?
A: An HF welded pipe mill is a machine used for producing welded pipes. It utilizes high-frequency induction heating to rapidly and efficiently weld steel strips or plates, forming seamless or welded pipes.
Q2: What types of pipes can be produced with an HF welded pipe mill?
A: HF welded pipe mills can produce various types of pipes, including round pipes, square pipes, and rectangular pipes. The pipes can be made from materials such as stainless steel, carbon steel, and alloy steel.
Q3: How does an HF welded pipe mill work?
A: An HF welded pipe mill uses high-frequency induction heating to heat the steel strip or plate to the welding temperature. Then, the heated material is rolled or pressed into a pipe shape using rollers or roll forming devices, creating the welded joint. High-frequency current is often used to heat and melt the weld seam during the welding process.
Q4: What are the advantages of an HF welded pipe mill?
A: HF welded pipe mills offer advantages such as high production efficiency, good welding quality, and low cost. They enable continuous and automated production processes, resulting in welded pipes with consistent strength, precise dimensions, and smooth surface finishes.
Q5: What are the applications of an HF welded pipe mill?
A: HF welded pipe mills have a wide range of applications in industries such as oil and gas, construction and infrastructure, water and wastewater systems, mechanical and engineering applications, automotive industry, manufacturing and fabrication, and more.
Q6: What maintenance and upkeep are required for an HF welded pipe mill?
A: Maintenance and upkeep for an HF welded pipe mill typically involve regular inspection and cleaning of the equipment to ensure smooth operation. It is also necessary to periodically replace worn-out components, perform lubrication and maintenance tasks to extend the equipment's lifespan and ensure production quality.