Hobart Welding Products 1025 manual Sequence Of Operation, Example Of Cutting Operation

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4-3. Sequence Of Operation

Do not clean torch by hitting it against a hard surface. Hitting hard surfaces can damage torch parts and stop proper opera- tion.

Inspect shield cup, tip, and electrode for wear before cutting or whenever cutting speed has been significantly reduced (see torch Owner’s Manual). Do not operate torch without a tip or electrode in place.

Install &

Put On Personal

Check Torch

Check Gas/Air

Set

Turn On

Connect

Safety

(See Torch

Pressure

Controls

Power Source

Equipment

Equipment

Owner’s Manual)

(See Section 4-1)

 

 

Begin

 

 

 

 

 

Cutting

 

 

 

 

 

EXAMPLE Of Cutting Operation

The pilot arc starts immediately when

 

trigger is pressed.

Place torch tip on edge of metal.

Press trigger. Pilot arc starts.

After cutting arc starts, slowly start moving torch across metal.

Adjust torch speed so

Pause briefly at end of

sparks go thru metal and

cut before releasing trigger.

out bottom of cut.

 

Postflow continues for approx. 20 to 30 seconds after releasing trigger; cutting arc can be instantly restarted during postflow by pressing trigger.

ST-161 698-B

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Contents Processes OM-2210Description Page Table of Contents Directives StandardsPlasma Arc Cutting Hazards Symbol UsageMarks a special safety message Cutting can cause fire or explosionNoise can damage hearing Flying Sparks can cause injuryARC Rays can burn eyes and skin Fumes and Gases can be hazardousPrincipal Safety Standards EMF Information About PacemakersUNE Décharge Électrique peu t entraîner la mort Signification des symbolesLE Coupage présente un risque de feu ou d’explosion Identifie un message de sécurité particulierLE Plasma D’ARC peut entraîner des blessures LE Bruit peut endommager l’ouïeLES Fumées ET LES GAZ peuvent être dangereux LES Bouteilles peuvent exploser si elles sont endommagéesPrincipales normes de sécurité Information sur les champs électromagnétiques Consignes relatives aux stimulateurs cardiaques− Definitions I1max Symbols And DefinitionsManufacturer’s Rating Label For CE Products I1eff− Installation Specifications For CE ModelDuty Cycle And Overheating For CE Model Exceeding duty cycle can damage unit and void warrantyDuty Cycle And Overheating For Non-CE Model OverheatingSelecting a Location Dimensions And WeightWhere it could tip Movement Do not move or operate unitConnecting Work Clamp And Gas/Air Supply PressureInstalling Alternative Plug 115V− Operation Setting Gas/Air PressureControls Cutting Speed Example Of Cutting Operation Sequence Of OperationTrigger is pressed Each Use − Maintenance & TroubleshootingRoutine Maintenance Every WeekWays turn Off power when changing or checking consumables Checking Torch Shield Cup Shutdown SystemTorch Connections Torch And Work Cable ConnectionsWork Cable Connections Troubleshooting Trouble Remedy− Electrical Diagram Circuit Diagram For Power Source− Parts List Main AssemblyDia Part Mkgs Description Quantity +181 Effective January 1 CallOwner’s Record

1025 specifications

Hobart Welding Products has long been a trusted name in the welding industry, and their Hobart 1025 model stands out as a reliable choice for both professionals and hobbyists. Designed primarily for MIG welding, the Hobart 1025 is suitable for a variety of applications including automotive repairs, metal fabrication, and home projects.

One of the key features of the Hobart 1025 is its user-friendly interface. The machine comes equipped with an intuitive control panel that allows users to set their welding specifications easily, ensuring an efficient setup process. This is particularly beneficial for beginners who may find complex machines daunting. With its solid construction and portability, the Hobart 1025 can be used in various environments, making it a versatile tool for different welding tasks.

The welding output range of the Hobart 1025 is one of its standout characteristics. It offers a power range of 25 to 140 amps, allowing it to handle a wide range of materials from thin sheet metal to heavier stock. This flexibility enables welders to adjust the machine based on specific project requirements, delivering quality results each time. Additionally, the machine works well with a variety of wire types, including flux-cored and solid wire, providing users with more options for their welding needs.

Another highlight of the Hobart 1025 is its advanced technology. The machine features a built-in thermal overload protection mechanism that prevents overheating, thus prolonging its lifespan and ensuring safe operation. This technological aspect ensures that users can work longer without the risk of damaging the equipment.

Moreover, the Hobart 1025 is designed for efficiency. It boasts a smooth arc transfer that reduces spatter and produces clean welds, which minimizes the need for post-weld cleanup. This efficiency translates to time saved on projects, allowing users to focus on completing their work rather than dealing with excess cleanup.

In summary, the Hobart Welding Products 1025 model offers impressive features, flexibility, and advanced technologies that cater to a diverse range of welding applications. With its user-friendly design, reliable performance, and durable construction, it continues to be an exceptional choice for both novice and experienced welders alike.