
Micro Welding Course
Master the precision techniques, equipment, and quality standards that define professional micro welding across medical, aerospace, electronics, and tooling industries. This course takes you from core physics and safety fundamentals all the way through advanced applications and process control. Whether you work with laser systems, resistance welders, or micro TIG, you'll build the hands-on knowledge employers demand.
What you will learn:
Gain a solid understanding of micro welding processes - laser, resistance, electron beam, and micro TIG. The course covers equipment setup, shielding gas selection, joint preparation, and parameter development for typical material thicknesses. Learn to inspect welds with visual, non-destructive, and mechanical testing and interpret results against industry acceptance criteria. Process control includes statistical methods, in-process monitoring, and documentation for production. Advanced modules cover medical device, aerospace, electronics, and mold repair applications. By the end you’ll have the technical foundation and practical skills to perform and control micro welding in professional environments.
How you study in practice Micro Welding Course
How you practise Micro Welding Course
For companies looking to train their team
With Dedika for Business, the course includes exercises and examples tailored to your own business and the way your company needs.
Course Content
8 Chapters • 40 LessonsDuration between 4 and 360 hours (you decide)
Chapter 1HideHide detailsSee detailsFoundations of Micro Welding
Foundations of Micro Welding
Lesson 1 • Common Micro Welding Processes
Surveys laser, resistance, electron beam, and micro TIG processes. Provides a framework for selecting the right process in later chapters.
Lesson 2 • Materials Behavior at Micro Scale
Covers how metals, alloys, and thin films respond to micro-scale heat input. Prepares students to anticipate distortion and metallurgical challenges.
Lesson 3 • Physics of Micro-Scale Fusion
Explains heat generation, thermal gradients, and surface tension at micro scale. Connects physics principles to practical weld quality outcomes.
Lesson 4 • Safety and Regulatory Fundamentals
Establishes laser radiation, electrical, and fume hazards specific to micro welding. Ensures compliance with workplace safety standards before hands-on work begins.
Lesson 5 • What Is Micro Welding
Defines micro welding, its scale, and how it differs from conventional welding. Establishes the conceptual baseline for all subsequent technical content.
Chapter 2HideHide detailsSee detailsEquipment and Workspace Setup
Equipment and Workspace Setup
Lesson 1 • Resistance and Micro TIG Equipment
Covers resistance welding heads, electrode holders, and micro TIG torch assemblies. Builds equipment literacy needed for process-specific chapters.
Lesson 2 • Workspace Calibration and Maintenance
Covers beam alignment, electrode conditioning, and preventive maintenance schedules. Ensures equipment performs within specification before every production run.
Lesson 3 • Fixturing and Workholding Devices
Introduces precision vises, vacuum chucks, and custom fixtures for micro-scale parts. Proper fixturing prevents movement that causes weld defects.
Lesson 4 • Microscopy and Vision Systems
Explains stereo microscopes, CCD cameras, and coaxial viewing systems used during welding. Develops the visual acuity skills essential for precision work.
Lesson 5 • Laser Micro Welding Systems
Identifies laser source types, beam delivery components, and control interfaces. Connects hardware knowledge to parameter setting in later chapters.
Chapter 3HideHide detailsSee detailsShielding Gas and Joint Preparation
Shielding Gas and Joint Preparation
Lesson 1 • Shielding Gas Fundamentals
Explains the role of argon, helium, and mixed gases in protecting micro weld pools. Gas choice directly affects arc stability and weld appearance.
Lesson 2 • Pre-Weld Inspection Techniques
Introduces visual, dimensional, and surface roughness checks before welding begins. Early defect detection prevents scrap and rework downstream.
Lesson 3 • Surface Cleaning and Preparation
Teaches chemical cleaning, mechanical abrasion, and ultrasonic methods for micro parts. Clean surfaces are the single greatest factor in micro weld quality.
Lesson 4 • Gas Delivery System Design
Covers micro nozzle design, trailing shields, and purge chambers for sensitive alloys. Proper delivery prevents turbulence that introduces porosity.
Lesson 5 • Joint Design for Micro Welds
Covers butt, lap, T, and edge joint geometries scaled for micro applications. Joint design determines accessibility, strength, and heat distribution.
Chapter 4HideHide detailsSee detailsLaser Micro Welding Parameters
Laser Micro Welding Parameters
Lesson 1 • Troubleshooting Laser Weld Defects
Identifies porosity, undercut, spatter, and incomplete fusion causes and corrections. Links defect appearance to specific parameter adjustments.
Lesson 2 • Laser Parameter Fundamentals
Defines peak power, average power, pulse energy, and duty cycle for pulsed lasers. These variables govern heat input and weld geometry.
Lesson 3 • Parameter Development and Testing
Guides students through coupon testing, bead-on-plate trials, and parameter matrices. Systematic testing produces validated parameter sets for production.
Lesson 4 • Focus Position and Beam Delivery
Explains focal length, depth of focus, and defocus strategies for penetration control. Beam positioning errors are a leading cause of incomplete fusion.
Lesson 5 • Pulse Shaping Techniques
Covers ramp-up, flat-top, and ramp-down pulse profiles and their metallurgical effects. Pulse shaping reduces cracking and porosity in sensitive alloys.
Chapter 5HideHide detailsSee detailsResistance and Micro TIG Welding Techniques
Resistance and Micro TIG Welding Techniques
Lesson 1 • Filler Wire Addition at Micro Scale
Covers micro filler wire diameters, feed angles, and manual dip technique for micro TIG. Filler addition must not disturb the arc or contaminate the tungsten.
Lesson 2 • Resistance Welding Process Control
Covers weld current, time, electrode force, and hold time as the four primary variables. Balancing these variables produces consistent nugget size and strength.
Lesson 3 • Electrode Selection and Management
Explains electrode alloy grades, tip geometry, and wear mechanisms for micro resistance welding. Electrode condition is the most common cause of weld variation.
Lesson 4 • Welding Dissimilar Metal Combinations
Addresses intermetallic formation, dilution control, and filler selection for dissimilar pairs. Dissimilar welds require modified parameters from same-metal baselines.
Lesson 5 • Micro TIG Arc Initiation and Control
Teaches high-frequency arc start, arc length control, and travel speed for micro TIG. Stable arc control is prerequisite to consistent bead geometry.
Chapter 6HideHide detailsSee detailsWeld Quality Inspection and Testing
Weld Quality Inspection and Testing
Lesson 1 • Defect Classification and Disposition
Teaches systematic defect classification, root cause identification, and repair or reject decisions. Consistent disposition prevents nonconforming parts from reaching assembly.
Lesson 2 • Mechanical Testing of Micro Welds
Applies micro tensile, peel, shear, and hardness tests to quantify weld strength. Mechanical data validates that welds meet design load requirements.
Lesson 3 • Non-Destructive Evaluation Methods
Introduces dye penetrant, X-ray, and ultrasonic testing adapted for micro weld scale. NDE preserves parts while detecting subsurface discontinuities.
Lesson 4 • Metallographic Cross-Section Analysis
Covers sectioning, mounting, polishing, and etching micro weld samples for microscopic examination. Cross-sections reveal internal defects invisible from the surface.
Lesson 5 • Visual and Dimensional Inspection
Uses calibrated microscopes and optical comparators to assess bead geometry and surface condition. Visual inspection is the first and fastest quality gate.
Chapter 7HideHide detailsSee detailsProcess Control and Repeatability
Process Control and Repeatability
Lesson 1 • In-Process Monitoring Technologies
Covers photodiode, pyrometer, and plasma emission monitoring for real-time weld feedback. Inline monitoring catches drift before defective parts accumulate.
Lesson 2 • Gauge and Equipment Calibration Control
Covers calibration intervals, traceability to measurement standards, and out-of-calibration response. Calibrated equipment is the foundation of reliable process data.
Lesson 3 • Weld Parameter Documentation Systems
Establishes weld procedure specifications, traveler cards, and digital parameter logging. Traceability links every weld to its recorded process conditions.
Lesson 4 • Continuous Improvement in Micro Welding
Applies PDCA cycles, fishbone analysis, and design of experiments to reduce weld variation. Structured improvement methods sustain gains beyond initial qualification.
Lesson 5 • Statistical Process Control Basics
Introduces control charts, Cp/Cpk indices, and sampling plans for micro welding parameters. SPC converts inspection data into actionable process adjustments.
Chapter 8HideHide detailsSee detailsAdvanced Applications and Specialized Processes
Advanced Applications and Specialized Processes
Lesson 1 • Medical Device Micro Welding
Addresses biocompatible alloy selection, cleanliness standards, and traceability for implantable devices. Medical welding demands zero-defect outcomes and full process documentation.
Lesson 2 • Electronics and Microelectronics Welding
Covers battery tab welding, wire bonding alternatives, and PCB component attachment. Thermal sensitivity of electronics demands precise energy control.
Lesson 3 • Aerospace and Defense Applications
Applies micro welding to turbine blade repair, fuel system components, and sensor housings. Aerospace specifications require certified procedures and first-article inspection.
Lesson 4 • Mold and Tool Repair Welding
Uses micro laser welding to restore worn or damaged mold cavities and cutting tools. Repair welding extends tool life and reduces replacement costs significantly.
Lesson 5 • Jewelry and Watchmaking Micro Welding
Adapts laser micro welding for precious metal repair, sizing, and stone-setting reinforcement. Aesthetic quality and minimal heat spread are primary success criteria.
Your valid completion certificate
This course is for you:
Conventional welder: ready to specialize in precision small-scale work.
Manufacturing technician: supporting medical or electronics production lines daily.
Jewelry professional: wanting to add laser repair capabilities to their bench.
Quality inspector: needing deeper process knowledge to evaluate micro welds.
Engineering student: building specialized skills before entering high-tech industries.
Tool and die worker: looking to extend mold life through precision repair welding.
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