
Arc Welding Course
Master arc welding from safety fundamentals to pipe and structural applications in one comprehensive course. You'll build hands-on proficiency with SMAW, GMAW, and GTAW processes, learn to read blueprints, and qualify your welds against industry codes. This course gives you the technical skills and professional knowledge employers demand on the shop floor.
What you will learn:
You'll start with welding safety, hazard identification, and PPE selection before moving into electrical theory, arc physics, and heat input calculations. From there, you'll develop hands-on technique with stick, MIG, and TIG processes across all four welding positions. The course covers joint design, filler metal selection, distortion control, and multi-pass weld sequencing. You'll also learn visual and nondestructive inspection methods, welding procedure specifications, and welder qualification requirements. Supplementary modules address pipe welding, cutting processes, metallurgy, and welding cost estimation to round out your professional skill set.
How you study in a practical way Arc Welding Course
How you practice Arc Welding Course
For companies who want to train their team
With Dedika for businesses, the course includes exercises and examples tailored to your own business and the way your company needs.
Course content
8 Chapters • 39 LessonsDuration between 4 and 360 hours (you decide)
Chapter 1HideHide detailsSee detailsWelding Safety and Workplace Fundamentals
Welding Safety and Workplace Fundamentals
Lesson 1 • Regulatory Compliance and Documentation
Introduces safety data sheets, inspection logs, and workplace safety regulations. Compliance documentation is a professional requirement in all industrial settings.
Lesson 2 • Ventilation and Fume Control
Explains local exhaust ventilation, natural airflow, and fume extraction systems. Proper ventilation is mandatory before any arc is struck in the shop.
Lesson 3 • Fire Prevention and Emergency Response
Covers hot-work permits, fire watch duties, and emergency procedures. Students practice extinguisher use and evacuation protocols relevant to welding shops.
Lesson 4 • Personal Protective Equipment Selection
Teaches correct PPE selection and fit for arc welding tasks. Proper gear use directly reduces injury risk during all practical exercises.
Lesson 5 • Hazard Identification in Welding Environments
Covers electrical, fume, fire, and radiation hazards specific to arc welding. Builds the risk-awareness foundation required for every subsequent hands-on activity.
Chapter 2HideHide detailsSee detailsWelding Theory and Electrical Principles
Welding Theory and Electrical Principles
Lesson 1 • Heat Input and Metallurgical Effects
Connects amperage, voltage, and travel speed to heat input calculations. Students predict how heat input affects the heat-affected zone and base metal properties.
Lesson 2 • Welding Power Sources and Characteristics
Examines constant-current and constant-voltage machines, duty cycles, and output curves. Students match power source type to the welding process being used.
Lesson 3 • Electrical Current Types and Polarity
Covers AC, DC electrode positive, and DC electrode negative and their effects on penetration and deposition. Polarity selection is critical for process-specific performance.
Lesson 4 • The Physics of the Welding Arc
Explains arc plasma, ionization, and heat generation at the weld pool. Understanding arc physics enables students to diagnose and correct weld defects later.
Chapter 3HideHide detailsSee detailsMetals, Filler Materials, and Joint Design
Metals, Filler Materials, and Joint Design
Lesson 1 • Base Metal Identification and Properties
Covers carbon steel, stainless steel, aluminum, and cast iron characteristics. Metal identification skills prevent mismatched filler selection and weld failures.
Lesson 2 • Welding Positions and Accessibility
Defines flat, horizontal, vertical, and overhead positions and their difficulty levels. Position awareness guides procedure selection and welder qualification requirements.
Lesson 3 • Weld Joint Types and Geometry
Introduces butt, T, lap, corner, and edge joints with groove and fillet variations. Joint geometry directly determines fit-up, access, and required weld volume.
Lesson 4 • Filler Metal Classification Systems
Explains electrode and wire classification numbering for strength, position, and coating type. Students decode filler designations to select correct consumables.
Lesson 5 • Weld Symbols and Blueprint Reading
Teaches standard weld symbols, reference lines, and tail notations used on engineering drawings. Blueprint literacy is essential for fabricating to specification.
Chapter 4HideHide detailsSee detailsShielded Metal Arc Welding Fundamentals
Shielded Metal Arc Welding Fundamentals
Lesson 1 • Flat-Position Stringer and Weave Beads
Develops travel speed control and weave patterns for flat-position bead deposition. Uniform bead width and reinforcement height are the measurable outcomes.
Lesson 2 • SMAW Equipment Setup and Inspection
Covers machine selection, cable sizing, electrode holder inspection, and work clamp placement. Correct setup prevents electrical hazards and ensures stable arc performance.
Lesson 3 • Electrode Selection and Storage
Explains low-hydrogen, cellulosic, and iron-powder electrode types and their storage requirements. Moisture-contaminated electrodes cause porosity and hydrogen cracking.
Lesson 4 • Slag Removal and Weld Inspection
Covers chipping, wire brushing, and visual inspection against acceptance criteria. Clean, defect-free beads are the baseline standard before advancing to joint welding.
Lesson 5 • Arc Striking and Bead Initiation
Teaches scratch-start and tap-start techniques with correct electrode angle and arc length. Consistent arc initiation is the first motor skill required for quality welds.
Chapter 5HideHide detailsSee detailsSMAW Joint Welding in Multiple Positions
SMAW Joint Welding in Multiple Positions
Lesson 1 • Vertical Fillet and Groove Welds
Introduces uphill and downhill vertical techniques for fillet and groove joints. Gravity management and electrode angle adjustments are the key skill challenges.
Lesson 2 • Distortion Control and Fit-Up Practices
Explains tacking sequences, backstep welding, and fixturing to minimize distortion. Dimensional accuracy after welding is a professional fabrication requirement.
Lesson 3 • Overhead Fillet and Groove Welds
Develops overhead welding technique with emphasis on puddle control and spatter management. Overhead position demands maximum electrode angle precision and short arc length.
Lesson 4 • Flat and Horizontal Fillet Welds
Builds T-joint and lap-joint fillet welds in flat and horizontal positions with correct leg size. These are the most common industrial welds and form the skill baseline.
Lesson 5 • Multi-Pass Groove Weld Sequences
Covers root, fill, and cap pass sequencing for groove joints in all positions. Proper sequencing minimizes distortion and ensures full fusion throughout the joint.
Chapter 6HideHide detailsSee detailsGas Metal Arc Welding Process Mastery
Gas Metal Arc Welding Process Mastery
Lesson 1 • Shielding Gas Selection and Flow Rates
Explains argon, CO2, and mixed gas blends and their effects on arc character and spatter. Gas selection is process- and material-specific and affects weld appearance.
Lesson 2 • GMAW Technique and Travel Variables
Develops push versus drag technique, work angle, and travel speed control for GMAW. Technique variables interact with parameters to determine bead profile and fusion.
Lesson 3 • GMAW Equipment and Wire Feed Systems
Covers wire feeder types, drive roll selection, liner maintenance, and contact tip sizing. Equipment setup quality directly determines arc stability and wire feed consistency.
Lesson 4 • Flux-Cored Arc Welding Fundamentals
Introduces self-shielded and gas-shielded FCAW wire types, polarity, and technique differences from solid wire GMAW. FCAW extends productivity in outdoor and heavy fabrication.
Lesson 5 • Transfer Modes and Parameter Setting
Distinguishes short-circuit, globular, spray, and pulse transfer modes and their parameter ranges. Mode selection determines penetration, spatter level, and positional capability.
Chapter 7HideHide detailsSee detailsGas Tungsten Arc Welding Techniques
Gas Tungsten Arc Welding Techniques
Lesson 1 • Tungsten Electrode Preparation
Explains electrode types, grinding geometry for DC, and balling for AC aluminum welding. Electrode preparation directly controls arc focus and contamination risk.
Lesson 2 • GTAW Aluminum Welding
Covers AC balance, cleaning action, and filler selection for aluminum GTAW. Oxide layer removal and puddle fluidity management are unique aluminum challenges.
Lesson 3 • GTAW on Carbon and Stainless Steel
Applies GTAW technique to butt and fillet joints on carbon and stainless steel plate and pipe. Stainless steel requires heat control to prevent sensitization and distortion.
Lesson 4 • GTAW Equipment Setup and Torch Preparation
Covers torch body, collet, gas lens, nozzle selection, and back-purge setup. Correct torch assembly is prerequisite to arc stability and contamination-free welds.
Lesson 5 • Arc Starting and Filler Rod Feeding
Teaches high-frequency start, lift-arc start, and manual filler rod feeding technique. Coordinating torch and filler hand movement is the core GTAW motor skill.
Chapter 8HideHide detailsSee detailsWeld Quality, Inspection, and Testing
Weld Quality, Inspection, and Testing
Lesson 1 • Destructive Testing Methods
Covers bend, nick-break, macro-etch, and tensile tests used to qualify procedures and welders. Destructive tests reveal internal quality not visible on the surface.
Lesson 2 • Nondestructive Examination Overview
Introduces liquid penetrant, magnetic particle, ultrasonic, and radiographic testing principles. NDE methods detect subsurface defects without destroying the weld.
Lesson 3 • Visual Inspection Methods and Tools
Teaches systematic visual inspection using gauges, magnifiers, and lighting against acceptance criteria. Visual inspection is the first and most cost-effective quality gate.
Lesson 4 • Welding Procedure and Welder Qualification
Explains welding procedure specifications, procedure qualification records, and welder performance qualification. Qualification documents are required for code-compliant work.
Lesson 5 • Weld Discontinuities and Their Causes
Classifies porosity, cracks, undercut, overlap, incomplete fusion, and inclusions with root causes. Accurate defect identification is prerequisite to corrective action.
Your valid completion certificate
This course is for you:
Career changer: seeking a skilled trade with strong, immediate job market demand.
Recent high school graduate: ready to enter a hands-on technical career path.
Construction laborer: looking to upgrade credentials and earn higher wages on site.
Hobbyist fabricator: wanting to move beyond trial and error with proper technique.
Military veteran: translating discipline and mechanical aptitude into a civilian trade career.
Maintenance technician: needing formal welding skills to handle in-house repair work.
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