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Automation Risk Analysis

Will “Soldering Machine Operator” be Automated?

Historical Context: Oxford Study (2013)

Ranked #342 of 702. Estimated risk: 61.0%

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AI Exposure Risk

52%

“Soldering Machine Operator” will maybe be replaced by AI.

Based on the cognitive demands, communication requirements, and logical reasoning intrinsic to this occupation according to O*NET data, we project a 52% probability of disruption by generative AI and Large Language Models.

Automation & Robot Risk

61%

“Soldering Machine Operator” will maybe be replaced by robots.

Evaluating the physical dexterity, repetitive motion tasks, and manual labor associated with this role, our analysis indicates a 61% likelihood of substitution by advanced robotics systems.

Personal & Financial Insights

Every occupation has a unique profile. For Welding, Soldering, and Brazing Machine Setters, Operators, and Tenders, the Bureau of Labor Statistics and O*NET classify the day-to-day work broadly as: Set up, operate, or tend welding, soldering, or brazing machines or robots that weld, braze, solder, or heat treat metal products, components, or assemblies. Includes workers who operate laser cutters or laser-beam machines.

Avg. Annual Salary $49,270
Avg. Hourly Wage $23.69
Available Jobs (US) 36,290
Job Title & Hierarchy Code (SOC) Welding, Soldering, and Brazing Machine Setters, Operators, and Tenders #51-4122
Wage vs. National Median
ℹ️

Data is based on the reference occupation: “Welding, Soldering, and Brazing Machine Setters, Operators, and Tenders”

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Core Skills & Abilities

  • Set dials and timing controls to regulate electrical current, gas flow pressure, heating or cooling cycles, or shut-off.

  • Select, position, align, and bolt jigs, holding fixtures, guides, or stops onto machines, using measuring instruments and hand tools.

  • Set up, operate, or tend welding machines that join or bond components to fabricate metal products or assemblies.

  • Assemble, align, and clamp workpieces into holding fixtures to bond, heat-treat, or solder fabricated metal components.

  • Anneal finished workpieces to relieve internal stress.

  • Inspect, measure, or test completed metal workpieces to ensure conformance to specifications, using measuring and testing devices.

  • Devise or build fixtures or jigs used to hold parts in place during welding, brazing, or soldering.

  • Add chemicals or materials to workpieces or machines to facilitate bonding or to cool workpieces.

  • Load or feed workpieces into welding machines to join or bond components.

  • Remove completed workpieces or parts from machinery, using hand tools.

  • Give directions to other workers regarding machine set-up and use.

  • Turn and press knobs and buttons or enter operating instructions into computers to adjust and start welding machines.

  • Prepare metal surfaces or workpieces, using hand-operated equipment, such as grinders, cutters, or drills.

  • Read blueprints, work orders, or production schedules to determine product or job instructions or specifications.

  • Clean, lubricate, maintain, and adjust equipment to maintain efficient operation, using air hoses, cleaning fluids, and hand tools.

  • Start, monitor, and adjust robotic welding production lines.

  • Correct problems by adjusting controls or by stopping machines and opening holding devices.

  • Record operational information on specified production reports.

  • Lay out, fit, or connect parts to be bonded, calculating production measurements, as necessary.

  • Select torch tips, alloys, flux, coil, tubing, or wire, according to metal types or thicknesses, data charts, or records.

  • Transfer components, metal products, or assemblies, using moving equipment.

  • Immerse completed workpieces into water or acid baths to cool and clean components.

  • Compute and record settings for new work, applying knowledge of metal properties, principles of welding, and shop mathematics.

  • Mark weld points and positions of components on workpieces, using rules, squares, templates, or scribes.

  • Tend auxiliary equipment used in welding processes.

  • Dress electrodes, using tip dressers, files, emery cloths, or dressing wheels.

  • Observe meters, gauges, or machine operations to ensure that soldering or brazing processes meet specifications.

  • Fill hoppers and position spouts to direct flow of flux or manually brush flux onto seams of workpieces.

  • Conduct trial runs before welding, soldering, or brazing, and make necessary adjustments to equipment.

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  • Measuring tapes
  • Laser-beam machines
  • Hydraulic winches
  • Tungsten inert gas TIG welding equipment
  • Magnifiers
  • Power grinders
  • Tongs
  • Walk-behind lift trucks
  • Heating furnaces
  • Brazing robots
  • Welding robots
  • Hydraulic booms
  • Ball peen hammers
  • Undercut gauges
  • Welding electrodes
  • Welding tip cleaning files
  • Soldering robots
  • Hand clamps
  • Arc welding equipment
  • Resistance welding machines
  • Desktop computers
  • Welding torch tips
  • Fillet weld gauges
  • Adjustable widemouth pliers
  • Portable welding machines
  • Hand scrapers
  • Center punches
  • Wire brushes
  • Vernier micrometers
  • Face masks
  • Bench vises
  • Diffusion-welding machines
  • Soldering machines
  • Product loading equipment
  • Vise grip pliers
  • Rulers
  • Claw hammers
  • Computerized numerical control CNC oxy-fuel systems
  • Cold-welding machines
  • Gas welding torches
  • Resistance welding guns
  • C clamps
  • Laser cutters
  • Spot welding guns
  • Workpiece positioning jigs
  • Safety gloves
  • Power hoists
  • Chipping hammers
  • Single-cut mill saw files
  • Safety goggles
  • Slip joint pliers
  • Brazing machines
  • Side cutting pliers
  • Micrometers
  • Outside micrometer calipers
  • Welding helmets
  • Welding tip dressers
  • Layout squares
  • Dial calipers

Alternative Job Titles