Payment Terms | T/T or western Union |
Supply Ability | 10,000pcs per month |
Delivery Time | Prompt goods |
Packaging Details | Manufacturer packing |
Product Name | Plasma Consumables |
Application | Plasma Cutting Machine |
Standard | Manufacturer production standard |
type | .11.848.311.614 G2514 |
Brand Name | Plasma Consumables |
Model Number | .11.848.311.614 G2514 |
Certification | ROHS/ SGS |
Place of Origin | China |
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Product Specification
Payment Terms | T/T or western Union | Supply Ability | 10,000pcs per month |
Delivery Time | Prompt goods | Packaging Details | Manufacturer packing |
Product Name | Plasma Consumables | Application | Plasma Cutting Machine |
Standard | Manufacturer production standard | type | .11.848.311.614 G2514 |
Brand Name | Plasma Consumables | Model Number | .11.848.311.614 G2514 |
Certification | ROHS/ SGS | Place of Origin | China |
High Light | powermax 1650 parts ,plasma torch parts |
Plasma Cutter Nozzle .11.848.311.614 G2514 For Kjellberg Plasma Cutting Machine
1. HEC Brand
We make metal cutting system and plasma cutter as well as torch and consumables. We make plasma cutting machine and fiber laser cutting machine with high quality and reliablity.
2. Cut Performance
HEC plasma consumables use high quality material and standard process to make sure the highest quality. Our consumables cutting performance is as the same as orginial OEM manufactory.
3. Good Price
HEC plasma consumables are good quality with low price make customers best requirement and saving money.
4. Big Catagory
HEC sell all kinds of plasma consumables include , EASB, Kjellberg, Koike and also supply some torch.
Machine | HEC NO. | Thum NO. | Ref NO. | Description |
Hifocus 280i Hifocus 360i Hifocus 440i (Carbon Steel) | K94211 | G901Y | .11.848.201.142 | Cooling tube |
K94212 | G902Y | .11.852.201.142 | Cooling tube | |
K94241 | G931Y | .11.848.401.142 | Cooling tube | |
K0402 | G002Y | .11.848.221.300 | Cathode O2 | |
K0105 | G015Y | .11.848.231.350 | Cathode O2 | |
K0101 | G011Y | .11.848.231.320 | Cathode O2 | |
K0106 | G016Y | .11.848.231.360 | Cathode O2 | |
K0402 | G092Y | .11.848.401.310 | Cathode O2 | |
K7441 | G101 | .11.848.221.145 | Gas guide | |
K1466 | G2006 | .11.848.221.406 | Nozzle O2 25A | |
K1467 | G2007 | .11.848.221.407 | Nozzle O2 35A | |
K54124 | G3004 | .11.848.201.1604 | Nozzle cap | |
K641515 | G4015 | .11.848.201.1515 | Swirl gas cap | |
K641220 | G4020 | .11.848.201.1520 | Swirl gas cap | |
K44191 | G501 | .11.848.201.081 | Protective cap | |
K0403 | G003Y | .11.848.221.310 | Gathode -O2 | |
K7442 | G102 | .11.848.221.146 | Gas guide | |
K1466 | G2006Y | .11.848.221.406 | Nozzle O2 | |
K1467 | G2007Y | .11.848.221.407 | Nozzle O2 | |
K1468 | G2008Y | .11.848.221.408 | Nozzle O2 50A | |
K14610 | G2010Y | .11.848.221.410 | Nozzle O2 80A | |
K14612 | G2012Y | .11.848.221.412 | Nozzle O2 120A | |
K14614 | G2014Y | .11.848.221.414 | Nozzle O2 160A | |
K14616 | G2016Y | .11.848.221.416 | Nozzle O2 200A | |
K14826 | G2326Y | .11.848.221.426 | Nozzle | |
K14830 | G2330Y | .11.848.221.430 | Nozzle | |
K14831 | G2331Y | .11.848.221.431 | Nozzle | |
K11014 | G2514 | .11.848.311.614 | Nozzle | |
K11015 | G2515 | .11.848.311.615 | Nozzle | |
K11016 | G2516 | .11.848.311.616 | Nozzle | |
K11018 | G2518 | .11.848.311.618 | Nozzle | |
K11125 | G2725 | .11.848.411.625 | Nozzle | |
K11127 | G2727 | .11.848.411.627 | Nozzle | |
K11129 | G2729 | .11.848.411.629 | Nozzle | |
K541228 | G3028 | .11.848.201.1628 | Nozzle cap | |
K641522 | G4022 | .11.848.201.1522 | Swirl gas cap | |
K641525 | G4025 | .11.848.201.1525 | Swirl gas cap | |
K641530 | G4030 | .11.848.201.1530 | Swirl gas cap | |
K04242 | G032Y | .11.848.421.310 | Cathode O2 | |
K04244 | G034Y | .11.848.421.330 | Cathode O2 | |
K74251 | G121 | .11.848.421.145 | Gas guide | |
K14826 | G2326Y | .11.848.421.426 | Nozzle O2 280A | |
K14830 | G2330Y | .11.848.421.430 | Nozzle O2 360A | |
K14831 | G2331Y | .11.848.421.431 | Nozzle -O2-400A | |
K541409 | G3209 | .11.848.401.1609 | Nozzle cap | |
K541419 | G3219 | .11.848.401.1619 | Nozzle cap | |
K541429 | G3229 | .11.848.401.1629 | Nozzle cap | |
K641745 | G4345 | .11.848.401.1545 | Swirl gas cap | |
K641750 | G4350 | .11.848.401.1550 | Swirl gas cap | |
K641755 | G4355 | .11.848.401.1555 | Swirl gas cap | |
K44201 | G521 | .11.848.401.081 | Protective cap | |
K94211 | G901Y | .11.848.201.142 | Water Tube | |
K94212 | G902Y | .11.852.201.142 | Water Tube | |
K94241 | G931Y | .11.848.401.142 | Water Tube |
Technical Support:
Plasma cutting is a process that cuts through electrically conductive materials by means of an accelerated jet of hot plasma. Typical materials cut by this process include steel, aluminum, brass and copper though other conductive metals may be cut as well. Plasma cutting is often used in fabrication and welding shops, automotive repair and restoration, industrial construction, salvage and scrapping operations. Due to the high speed, precision cuts, combined with low cost of operation, plasma cutting sees a widespread usage from large scale industrial CNC applications down to small hobbyist shops.
Process:
The basic plasma cutting process involves creating an electrical channel of ionized gas i.e. plasma from the plasma cutter itself, through the work piece to be cut, thus forming a completed electric circuit back to the plasma cutter via a grounding clamp. This is accomplished by a compressed gas (oxygen, air, inert and others depending on material being cut) which is blown through a focused nozzle at high speed toward the work piece. An electrical arc is then formed within the gas, between an electrode near or integrated into the gas nozzle and the work piece itself. The electrical arc ionizes some of the gas, thereby creating an electrically conductive channel of plasma. As electricity from the cutter torch travels down this plasma it delivers sufficient heat to melt through the work piece. At the same time, much of the high velocity plasma and compressed gas blow the hot molten metal away, thereby separating i.e. cutting through the work piece.
Plasma cutting is an effective means of cutting thin and thick materials alike. Hand-held torches can usually cut up to38mm thick steel plate, and stronger computer-controlled torches can cut steel up to 150 mm thick.[1] Since plasma cutters produce a very hot and very localized "cone" to cut with, they are extremely useful for cutting sheet metal in curved or angled shapes.
Company Details
Business Type:
Manufacturer,Exporter
Year Established:
2007
Total Annual:
4,000,000-6,000,000
Employee Number:
50~100
Ecer Certification:
Verified Supplier
We are a professional manufacturer of plasma cutter consumables, Our company is located in the Shanghai City, China ,it was established in 2007,but we had 10 years manufacturing experience in this field, the new factory covers an area of more than 10000... We are a professional manufacturer of plasma cutter consumables, Our company is located in the Shanghai City, China ,it was established in 2007,but we had 10 years manufacturing experience in this field, the new factory covers an area of more than 10000...
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