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Help with Brazing Equipment specifications:

Equipment Type
   Equipment Type:       
   Your choices are...         
   Complete System       Complete welding systems include brazing, cutting, soldering, and/or surfacing subsystems. They also include a power source or station; a torch, iron or gun; cables, feeders, and positioners; robots; and other required components. 
   Power Source / Station       Power sources or power stations are power supplies for brazing guns, induction heaters, lasers, resistance tips or other joining units, providing the required output power to melt the braze filler material. Power supplies are sometimes called power sources or brazing stations. 
   Gun / Torch       Irons, torches, or guns provide a point-source of heat for melting braze filler alloys at a joint or interface. Typically, hot rods irons are heated using electrical resistance. Gas torch or hot air-heated irons are also available, and are useful in plumbing or field applications where an electrical power source is not available. Gas burning, oxyfuel, and plasma torches are also used in brazing and welding applications. 
   Monitor / Controller       Monitor / controller equipment is used for sensing joint quality (size or integrity), gap, position, or output power supply variations. Controllers are also used to adjust parameters in order compensate for variations in joint quality or output power. 
   Other       Other unlisted brazing equipment types, components, or sub-systems. 
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Process Capability
   Brazing Process:       
   Your choices are...         
   Gas Torch       Gas torch brazing uses a combustible fuel gas such as propane and air or oxygen to heat the workpiece and melt the braze filler alloy. The molten braze alloy wets and flows across the heated work surface. Temperatures are normally high so that a metallurgical bond can be formed, but fusion of the workpiece does not normally occur. 
   Hot Rod / Iron       The brazing process uses a heated rod or iron to heat the work surface and melt the filler alloy. The molten braze wets and flows across the heated work surface. 
   Hot Dip       In hot dip brazing, the work pieces are immersion into a molten bath of filler alloy.  The bath heats the work surfaces. The molten filler alloy wets and flows across the heated work surface or is pulled into the joint by capillary action. Excess filler alloy runs off as the part is pulled from the molten bath. 
   Induction       Induction brazing is a process using an induction heating source to heat the work piece and melt the braze filler alloy. A high frequency power supply and induction coil induces current flow with the work piece causing internal resistance heating. The molten braze alloy wets and flows across the heated work surface. Temperatures are normally high so that a metallurgical bond can be formed, but fusion of the work piece does not normally occur. 
   Infrared       Infrared brazing is a process using an infrared or furnace heat source to heat the work piece and melt braze filler alloy. The Molten braze  alloy wets and flows across the heated work surface. Furnace brazing is sometimes called reflow brazing because the filler alloy is pre-applied to a part and then reflowed later during the assembly process. 
   Laser Brazing       Laser brazing is a process using a laser to heat the work piece and melt the braze filler alloy. The molten filler alloy wets and flows across the heated work surface. 
   Resistance Brazing       Resistance brazing is a process using a resistance heating to heat the work piece and melt the braze filler alloy. Contact tips or horns clamp onto the part and pass current through at a point adjacent to braze joint, causing internal and contact resistance heating. The molten braze alloy wets and flows across the heated work surface. Temperatures are normally high so that a metallurgical bond can be formed, but fusion of the work piece does not normally occur. 
   Specialty / Other Brazing Process       Other brazing or soldering processes not listed here. 
   Search Logic:      All products with ANY of the selected attributes will be returned as matches. Leaving all boxes unchecked will not limit the search criteria for this question; products with all attribute options will be returned as matches.
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Features & Technology
   Features & Technology       
   Your choices are...         
   Marine Duty / Corrosion Resistant?       Machines are designed for applications which require resistance to water or corrosion. Examples include shipyards, mines, paper mills, chemical plants, oil fields, underwater welding, bridges, or offshore drilling platforms. 
   Multi-operator?       The brazing power source, station or equipment is capable of supplying multiple operators. 
   Remote Control       Machine can be controlled remotely with a pendant, foot pedal, or other remote control unit. This allows the operator to have an additional hand free for holding or positioning. 
   Automated (Robot / CNC)       The machine has an integral or optional automation unit, such as a robot or CNC table. 
   Programmable / Recall       The machine can recall settings or allow the operator to program specific sets or sequences of parameters. 
   Pulsed Feeding       The machine has a pulsed wire, powder, or filler feeding capability. 
   Water Cooled?       The machine can use a supply of water to maintain the welding, cutting gun, or other unit components at a lower temperature in order improve the duty-cycle and reduce component over-heating or erosion. 
   Search Logic:      All products with ANY of the selected attributes will be returned as matches. Leaving all boxes unchecked will not limit the search criteria for this question; products with all attribute options will be returned as matches.
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