
Nuclear Piping Course
Get the technical knowledge and hands-on skills required to work confidently on nuclear-grade piping systems. This training covers everything from ASME codes and material traceability to welding qualification, NDE methods, and system turnover. Built for technicians who need to meet the highest standards in the industry.
What you will learn:
You will learn how nuclear power plant fluid systems are classified, designed, and built to meet strict regulatory and code requirements. The course covers ASME piping codes, material identification, fabrication techniques, and welding procedure qualification. You will also study nondestructive examination methods, piping support and seismic design, and pressure testing procedures. Radiation protection, aging management, and human performance tools are included to prepare you for real plant conditions. By the end, you will have the technical foundation to perform and document nuclear piping work to professional standards.
How you study in practice Nuclear Piping Course
How you practise Nuclear Piping Course
For companies looking to train their teams
With Dedika for businesses, the course includes exercises and examples tailored to your company and its specific needs.
Course content
8 Chapters • 40 LessonsDuration between 4 and 360 hours (you decide)
Chapter 1HideHide detailsSee detailsFoundations of Nuclear Plant Systems
Foundations of Nuclear Plant Systems
Lesson 1 • Regulatory Framework for Nuclear Piping
Surveys nuclear safety authority requirements, quality assurance programmes, and code compliance obligations. Frames the regulatory context for all subsequent technical chapters.
Lesson 2 • Plant Fluid System Terminology
Defines pressure, temperature, flow, and quality parameters used in nuclear piping specifications. Builds vocabulary required for reading engineering documents.
Lesson 3 • Safety-Related Fluid Systems
Identifies emergency core cooling, residual heat removal, and containment spray systems. Establishes why these systems demand the highest piping quality standards.
Lesson 4 • Reactor Types and Primary Systems
Introduces pressurised and boiling water reactor designs and their primary coolant loops. Connects reactor type to piping material and pressure requirements.
Lesson 5 • Nuclear Plant Layout and Zones
Covers reactor building zones, controlled areas, and radiological boundaries. Provides spatial context for all piping work performed on-site.
Chapter 2HideHide detailsSee detailsNuclear Piping Codes and Classifications
Nuclear Piping Codes and Classifications
Lesson 1 • Piping Classification Systems
Explains safety class 1, 2, and 3 designations and their non-nuclear seismic categories. Connects classification to required design margins and inspection frequency.
Lesson 2 • ASME Boiler and Pressure Vessel Code
Covers Section III nuclear components code requirements for design, materials, and fabrication. Students identify applicable code subsections for each piping class.
Lesson 3 • Quality Assurance Requirements
Details the 18 quality assurance criteria applied to nuclear piping procurement and installation. Links QA requirements to documentation and traceability obligations.
Lesson 4 • Reading Nuclear Piping Specifications
Trains students to extract classification, material, and examination requirements from piping specifications. Reinforces code knowledge through document interpretation exercises.
Lesson 5 • ASME B31.1 and B31.3 Applicability
Distinguishes power piping and process piping codes used for balance-of-plant systems. Students select the correct code for non-safety piping applications.
Chapter 3HideHide detailsSee detailsNuclear Piping Materials and Components
Nuclear Piping Materials and Components
Lesson 1 • Carbon and Low-Alloy Steel Piping
Covers grades, heat treatment states, and mechanical properties of carbon and low-alloy steels. Establishes baseline material knowledge for the most common nuclear piping.
Lesson 2 • Material Identification and Traceability
Teaches heat number verification, material test report review, and positive material identification methods. Ensures students can confirm material conformance before installation.
Lesson 3 • Pipe Fittings, Flanges, and Valves
Identifies butt-weld fittings, socket-weld fittings, flanges, and valve body materials. Connects component selection to pressure class and code compliance.
Lesson 4 • Stainless Steel and Nickel Alloys
Addresses austenitic stainless steel grades and nickel-based alloys used in high-temperature, corrosive service. Highlights sensitisation risks and delta ferrite controls.
Lesson 5 • Material Storage and Handling
Covers contamination prevention, segregation of dissimilar metals, and storage environment controls. Protects material integrity from receipt through installation.
Chapter 4HideHide detailsSee detailsNuclear Piping Fabrication Techniques
Nuclear Piping Fabrication Techniques
Lesson 1 • Fit-Up and Alignment Procedures
Teaches pipe alignment, gap control, and tack weld placement to achieve proper joint geometry. Correct fit-up directly affects weld quality and stress distribution.
Lesson 2 • Fabrication Documentation and Control
Establishes traveller packages, weld maps, and dimensional inspection records required for nuclear fabrication. Links documentation to code compliance and QA traceability.
Lesson 3 • Pipe Bending and Forming
Addresses cold bending, hot bending, and induction bending processes for nuclear piping. Covers wall thinning calculations and post-bend examination requirements.
Lesson 4 • Threaded and Mechanical Joints
Covers threaded joint assembly, torque requirements, and mechanical coupling installation for instrument and small-bore piping. Addresses leak-tight assembly practices.
Lesson 5 • Pipe Cutting and End Preparation
Covers mechanical cutting, grinding, and machining methods for producing code-compliant weld end preparations. Emphasises cleanliness and dimensional accuracy.
Chapter 5HideHide detailsSee detailsNuclear Welding Processes and Qualification
Nuclear Welding Processes and Qualification
Lesson 1 • Welder Performance Qualification
Addresses welder qualification tests, position and diameter ranges, and continuity requirements. Ensures students understand qualification limits before assigning welders.
Lesson 2 • Preheat, Interpass, and PWHT Controls
Covers preheat temperature requirements, interpass temperature limits, and post-weld heat treatment procedures. Addresses monitoring, recording, and documentation obligations.
Lesson 3 • Welding Procedure Specifications
Explains essential, supplementary essential, and nonessential variables that define a WPS. Students identify when procedure requalification is required after variable changes.
Lesson 4 • Welding Processes for Nuclear Piping
Covers GTAW, SMAW, GMAW, and FCAW processes and their applicability to nuclear piping classes. Compares heat input, distortion, and quality characteristics of each process.
Lesson 5 • Procedure Qualification Records
Covers test coupon preparation, mechanical testing requirements, and PQR acceptance criteria per nuclear code. Links PQR data to the supporting WPS.
Chapter 6HideHide detailsSee detailsNondestructive Examination of Nuclear Piping
Nondestructive Examination of Nuclear Piping
Lesson 1 • Visual and Liquid Penetrant Examination
Covers VT and PT methods, surface preparation, acceptance criteria, and documentation. Establishes the most fundamental examination methods used on every nuclear weld.
Lesson 2 • Magnetic Particle Examination
Addresses MT technique selection, magnetisation methods, and acceptance criteria for ferritic piping. Highlights limitations compared to PT for austenitic materials.
Lesson 3 • Radiographic Examination
Covers RT film and digital techniques, image quality indicators, and weld defect interpretation. Students evaluate radiographs against code acceptance standards.
Lesson 4 • Ultrasonic Examination
Teaches contact UT, angle beam scanning, and phased array methods for volumetric weld examination. Addresses calibration, scanning patterns, and flaw sizing.
Lesson 5 • NDE Documentation and Disposition
Covers examination report preparation, indication disposition, and repair-or-accept decisions per code. Links NDE results to the overall quality record package.
Chapter 7HideHide detailsSee detailsPiping Support, Stress, and Seismic Design
Piping Support, Stress, and Seismic Design
Lesson 1 • Piping Support Types and Functions
Identifies rigid supports, spring hangers, snubbers, and anchors and their load-carrying roles. Connects support type selection to thermal expansion and seismic demands.
Lesson 2 • Piping Stress Analysis Fundamentals
Introduces sustained, thermal expansion, and occasional load categories used in stress analysis. Provides technicians with enough theory to interpret stress isometrics.
Lesson 3 • Support Installation and Inspection
Teaches field installation of supports, weld attachment inspection, and gap and clearance verification. Ensures installed supports match design drawings within tolerances.
Lesson 4 • Seismic Qualification of Piping
Covers seismic category requirements, design response spectra, and dynamic analysis concepts. Explains how seismic loads drive support spacing and snubber placement.
Lesson 5 • Snubber Testing and Maintenance
Covers functional testing, acceptance criteria, and maintenance intervals for hydraulic and mechanical snubbers. Links snubber operability to plant safety function.
Chapter 8HideHide detailsSee detailsPressure Testing and System Turnover
Pressure Testing and System Turnover
Lesson 1 • Pressure Test Requirements and Planning
Covers code-required test pressures, test fluid selection, and pre-test inspection requirements. Establishes the planning steps that prevent test failures and safety incidents.
Lesson 2 • System Flushing and Cleanliness
Teaches flushing velocity requirements, temporary strainer installation, and cleanliness acceptance criteria. Protects pumps, valves, and reactor internals from debris damage.
Lesson 3 • System Turnover Package Completion
Covers punch list resolution, as-built drawing verification, and final QA record package assembly. Marks the formal transfer of the system from construction to operations.
Lesson 4 • Pneumatic Test Procedures
Covers pneumatic test safety precautions, pressure increments, and bubble solution leak detection. Addresses the elevated risk profile compared to hydrostatic testing.
Lesson 5 • Hydrostatic Test Execution
Addresses pressurisation rates, hold times, leak inspection methods, and acceptance criteria for hydrostatic tests. Covers vent and drain management during filling.
Your valid completion certificate
This course is for you:
Industrial pipefitter: ready to move into higher-paying nuclear plant work.
Welding technician: seeking qualification to work on safety-class piping systems.
QA inspector: expanding expertise to cover nuclear code compliance requirements.
Power plant maintenance worker: building credentials for piping system assignments.
Construction professional: entering nuclear new-build projects for the first time.
Career changer: bringing transferable trade skills into the regulated nuclear sector.
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