Description
Features of Kjellberg G2016Y Plasma Nozzle:
The Kjellberg G2016Y plasma nozzle is a critical component in advanced plasma cutting systems, engineered to deliver exceptional performance and precision. Below are the key features and specifications that characterize this nozzle:
- High-Temperature Resistance : Constructed from premium-grade materials, Kjellberg G2016Y plasma nozzle is designed to withstand extreme thermal conditions, ensuring durability and reliability in high-intensity cutting applications.
- Efficient Cooling Mechanism : Kjellberg G2016Y plasma nozzle incorporates an advanced cooling design that enhances thermal management, thereby prolonging the operational lifespan of the component and maintaining consistent cutting quality.
- Precision Cutting Capability : Engineered for high-precision applications, Kjellberg G2016Y plasma nozzle facilitates clean and accurate cuts across a wide range of materials, including ferrous and non-ferrous metals, thereby minimizing the need for secondary finishing processes.
- Robust Durability : Kjellberg G2016Y plasma nozzle is built to endure the demanding conditions of industrial environments, featuring wear-resistant properties that enhance its longevity and reduce the frequency of replacements.
- User-Friendly Replacement : Designed with ease of maintenance in mind, Kjellberg G2016Y plasma nozzle allows for quick and straightforward replacement, significantly reducing downtime and enhancing operational efficiency.
- Compatibility with Kjellberg Systems : Specifically engineered to integrate seamlessly with Kjellberg plasma cutting systems, Kjellberg G2016Y plasma nozzle ensures optimal performance and reliability, maximizing the effectiveness of the cutting process.
- Variety of Configurations : Available in multiple sizes and configurations, the G2016Y nozzle can be tailored to meet diverse cutting requirements, making it suitable for a wide array of industrial applications.
- Performance Optimization Features : Kjellberg G2016Y plasma nozzle is designed to optimize the plasma arc characteristics, resulting in improved cutting speed, reduced kerf width, and enhanced overall cutting performance.
For comprehensive technical specifications and operational guidelines, it is advisable to consult the manufacturer’s official documentation or product datasheet, which provides detailed insights into the nozzle’s capabilities and applications.
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HiFocus130i
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CODE
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Description
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G901Y
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.11.848.201.142
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Cooling tube
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G002Y
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.11.848.221.300
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Cathode O2
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G101
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.11.848.221.145
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Gas guide
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G2006
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.11.848.221.406
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Nozzle O2 25A
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G2007
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.11.848.221.407
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Nozzle O2 35A
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G3004
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.11.848.201.1604
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Nozzle cap
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G4015
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.11.848.201.1515
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Swirl gas cap
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G4020
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.11.848.201.1520
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Swirl gas cap
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G501
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.11.848.201.081
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Protective cap
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G003Y
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.11.848.221.310
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Cathode -O2
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G102
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.11.848.221.146
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Gas guide
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G2008
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.11.848.221.408
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Nozzle O2 50A
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G2010
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.11.848.221.410
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Nozzle O2 80A
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G2012
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.11.848.221.412
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Nozzle O2 120A
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G2014
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.11.848.221.414
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Nozzle O2 160A
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G2016Y
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.11.848.221.416
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Nozzle O2 200A
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G3028
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.11.848.201.1628
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Nozzle cap
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G4022
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.11.848.201.1522
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Swirl gas cap
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G4025
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.11.848.201.1525
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Swirl gas cap
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G4030
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.11.848.201.1530
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Swirl gas cap
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G032Y
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.11.848.421.310
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Cathode O2
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G034Y
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.11.848.421.330
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Cathode O2
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G121
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.11.848.421.145
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Gas guide
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G2326Y
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.11.848.421.426
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Nozzle O2 280A
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G2330Y
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.11.848.421.430
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Nozzle O2 360A
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G2331Y
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.11.848.421.431
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Nozzle -O2-400A
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G3209
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.11.848.401.1609
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Nozzle cap
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G3219
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.11.848.401.1619
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Nozzle cap
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G3229
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.11.848.401.1629
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Nozzle cap
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G4345
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.11.848.401.1545
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Swirl gas cap
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G4350
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.11.848.401.1550
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Swirl gas cap
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G4355
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.11.848.401.1555
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Swirl gas cap
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G971
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.11.848.411.142
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Cooling tube
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G042
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.11.848.211.510
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Cathode ArH2
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G3008
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.11.848.201.1608
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Nozzle cap
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G3018
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.11.848.201.1618
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Nozzle cap
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G052
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.11.848.311.510
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Cathode
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G105
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.11.848.221.149
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Gas guide
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G2516
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.11.848.311.616
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Nozzle
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G4530
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.11.848.311.1530
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Swirl gas cap
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G071
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.11.848.411.500
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Cathode ArH2
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G125
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.11.848.421.149
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Gas guide
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G2725
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.11.848.411.625
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Nozzle ArH2
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G2727
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.11.848.411.627
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Nozzle ArH2
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G2729
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.11.848.411.629
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Nozzle ArH2
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G3249
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.11.848.401.1649
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Nozzle cap
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G4335
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.11.848.401.1535
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Swirl gas cap
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G4340
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.11.848.401.1540
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Swirl gas cap
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G521
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.11.848.401.081
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Protective cap
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Application of Kjellberg G2016Y Plasma Nozzle:
The Kjellberg G2016Y plasma nozzle is utilized in various industrial applications due to its precision and efficiency in cutting processes. Here are some key applications:
- Metal Fabrication : Widely used in metal fabrication shops for cutting various metals, including mild steel, stainless steel, and aluminum. The nozzle’s precision allows for intricate designs and shapes.
- Automotive Industry : Employed in the automotive sector for cutting components and parts, such as chassis and body panels, where accuracy and clean edges are critical.
- Shipbuilding : Kjellberg G2016Y plasma nozzle is utilized in shipbuilding for cutting large metal sheets and components, enabling the construction of hulls and other structural elements with high precision.
- Aerospace Manufacturing : Applied in the aerospace industry for cutting lightweight materials and complex geometries, ensuring high-quality finishes that meet stringent industry standards.
- Construction and Structural Steel : Used for cutting structural steel components in construction projects, allowing for efficient assembly and installation of steel frameworks.
- Artistic Metalwork : Favored by artists and craftsmen for creating intricate metal art pieces, sculptures, and decorative elements due to its ability to produce fine details.
- Repair and Maintenance : Kjellberg G2016Y plasma nozzle is commonly used in repair and maintenance operations for cutting and modifying existing metal structures and components, facilitating quick and effective repairs.
- Heavy Equipment Manufacturing : Employed in the manufacturing of heavy machinery and equipment, where robust cutting capabilities are required for thick materials.
- Pipe and Tube Cutting : Suitable for cutting pipes and tubes in various industries, including oil and gas, where precise cuts are essential for fitting and assembly.
- Prototype Development : Kjellberg G2016Y plasma nozzle is used in prototyping and product development processes, allowing for rapid iteration and testing of designs in metal.
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