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ASME Training

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Master the full scope of ASME codes and standards — from pressure vessels and piping to welding qualifications and overpressure protection. This training gives engineers, inspectors, and compliance professionals the technical depth to design, fabricate, and certify pressure equipment with confidence. Build the skills that keep facilities safe and projects code-compliant.

Dedika for students

What your team will master:

This course covers the ASME Boiler and Pressure Vessel Code, the B31 piping series, Section IX welding qualifications, and in-service inspection requirements. You will learn how to perform pressure design calculations, select and size relief devices, and apply NDE methods to fabrication and inspection work. The training also addresses risk-based inspection, fitness-for-service assessment, and quality management system requirements for ASME certificate holders. You will practice reading code tables, interpreting code cases, and resolving conflicts between editions and jurisdictional requirements. By the end, you will be equipped to lead ASME compliance programs and support audits with confidence.

How your team learns in practice ASME Training

How your team practices ASME Training

Professionals from these companies study at Dedika

ActemiumFR
Nunner LogisticsNL
GT Constructora GeotécnicaCR
Sydel StarBR
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Aguas AndinasCL
DSMIN
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CDHCN

Course Content

8 Chapters • 40 LessonsDuration between 4 and 360 hours (you decide)

Chapter 1See details

Foundations of ASME Standards

  • Lesson 1 • ASME Code Families Overview

    Maps the major ASME code families—pressure vessels, piping, elevators, and more. Enables practitioners to navigate the full ASME catalog confidently.

  • Lesson 2 • Code Editions, Addenda, and Cases

    Explains versioning, addenda cycles, and code cases that modify base requirements. Ensures practitioners apply the correct edition to active projects.

  • Lesson 3 • Roles and Responsibilities Under ASME

    Defines the obligations of manufacturers, owners, inspectors, and authorized inspection agencies. Clarifies accountability chains required for code compliance.

  • Lesson 4 • Navigating ASME Documentation

    Teaches efficient use of ASME publications, digital tools, and interpretation requests. Reduces errors caused by misreading or misapplying code text.

  • Lesson 5 • History and Mission of ASME

    Traces ASME's founding, evolution, and role in global engineering safety. Provides context for why compliance with ASME standards is professionally and legally significant.

Chapter 2See details

Engineering Fundamentals for ASME Work

  • Lesson 1 • Corrosion Allowance and Degradation

    Addresses corrosion allowance selection and common degradation mechanisms in pressure equipment. Practitioners integrate these factors into initial design and fitness-for-service assessments.

  • Lesson 2 • Weld Joint Efficiency and Quality

    Explains joint efficiency factors and their effect on design thickness. Links weld quality categories directly to required examination levels.

  • Lesson 3 • Material Properties and Selection

    Reviews tensile strength, yield strength, toughness, and creep relevant to ASME allowable stresses. Correct material selection prevents code non-conformance and field failures.

  • Lesson 4 • Fatigue and Cyclic Loading Basics

    Introduces fatigue curves, cycle counting, and cumulative damage concepts used in ASME design-by-analysis. Prepares practitioners for advanced fatigue evaluation in later chapters.

  • Lesson 5 • Stress and Pressure Concepts

    Covers hoop stress, axial stress, and pressure relationships in cylindrical components. These concepts underpin every ASME thickness and pressure calculation.

Chapter 3See details

ASME Boiler and Pressure Vessel Code

  • Lesson 1 • BPVC Section VIII: Pressure Vessels

    Examines Divisions 1, 2, and 3 design philosophies and their applicability ranges. Practitioners select the appropriate division based on pressure, material, and risk.

  • Lesson 2 • Shell and Head Design Calculations

    Applies BPVC formulas to cylindrical shells, hemispherical, ellipsoidal, and flat heads. Practitioners perform and verify thickness calculations for common vessel geometries.

  • Lesson 3 • Pressure Testing and Certification

    Details hydrostatic and pneumatic test requirements, acceptance criteria, and documentation. Ensures practitioners can plan and witness compliant pressure tests.

  • Lesson 4 • BPVC Section IV: Heating Boilers

    Addresses low-pressure heating boilers, hot water heaters, and their unique design rules. Distinguishes heating boiler requirements from power boiler requirements covered earlier.

  • Lesson 5 • BPVC Section I: Power Boilers

    Covers scope, design rules, and stamping requirements for power boilers. Establishes the baseline for all subsequent pressure vessel code sections.

Chapter 4See details

ASME B31 Piping Codes

  • Lesson 1 • Piping Components and Fittings

    Reviews pressure ratings, material specifications, and end preparations for valves, flanges, and fittings. Ensures component selection meets B31 pressure-temperature requirements.

  • Lesson 2 • Piping Examination and Testing

    Defines examination categories, required NDE methods, and pressure test procedures for B31 piping. Links examination level to fluid service category and weld joint quality.

  • Lesson 3 • Pipe Wall Thickness Design

    Applies the B31 pressure design equation to determine minimum required wall thickness. Integrates mill tolerance, corrosion allowance, and mechanical allowances into final selection.

  • Lesson 4 • Flexibility and Stress Analysis

    Covers sustained, occasional, and expansion stress categories and their allowable limits. Practitioners evaluate piping flexibility to prevent fatigue and support failures.

  • Lesson 5 • B31 Code Selection and Scope

    Distinguishes B31.1, B31.3, B31.4, B31.8, and other sections by fluid service and industry. Correct code selection is the prerequisite for all subsequent piping design work.

Chapter 5See details

ASME Welding and NDE Requirements

  • Lesson 1 • Welding Procedure Specification

    Covers the content, development, and qualification of a Welding Procedure Specification (WPS). A valid WPS is mandatory before any code weld is deposited.

  • Lesson 2 • NDE Methods and Code Requirements

    Surveys radiographic, ultrasonic, magnetic particle, liquid penetrant, and visual examination methods. Matches each method to applicable ASME code requirements and acceptance standards.

  • Lesson 3 • Welder and Operator Qualification

    Details performance qualification tests, continuity requirements, and renewal conditions for welders and operators. Ensures only qualified personnel deposit code welds.

  • Lesson 4 • Weld Acceptance Criteria and Repair

    Applies ASME acceptance criteria for weld discontinuities and outlines the repair weld process. Practitioners disposition indications correctly and document repairs to code.

  • Lesson 5 • ASME Section IX Overview

    Introduces the structure of Section IX, its scope, and the distinction between welding and brazing qualifications. Establishes the framework for all weld procedure and performance qualification.

Chapter 6See details

ASME Pressure Relief and Overpressure Protection

  • Lesson 1 • Relief Device Sizing Calculations

    Applies ASME and API sizing equations for gas, vapor, steam, and liquid service. Practitioners calculate required orifice area and select the next standard device size.

  • Lesson 2 • Discharge System Design

    Covers closed and open discharge system design, back-pressure limits, and flare header sizing. Improper discharge system design can render correctly sized relief devices ineffective.

  • Lesson 3 • Documentation and Management of Change

    Establishes relief system documentation requirements and management-of-change procedures for modifications. Ensures protection system integrity is maintained when process conditions change.

  • Lesson 4 • Relief Device Types and Selection

    Compares spring-loaded, pilot-operated, and rupture disk devices for pressure and vacuum service. Correct device selection ensures reliable operation under all credible scenarios.

  • Lesson 5 • Overpressure Scenarios and Causes

    Identifies credible overpressure scenarios including blocked outlet, fire case, and utility failure. Scenario identification drives relief device sizing and system design.

Chapter 7See details

ASME Inspection and In-Service Requirements

  • Lesson 1 • In-Service Inspection Standards Overview

    Introduces inspection standards for in-service pressure vessels, piping, and boilers. Distinguishes new construction code requirements from ongoing operational inspection obligations.

  • Lesson 2 • Inspection Records and Compliance Reporting

    Establishes requirements for inspection records, deficiency tracking, and regulatory reporting. Accurate documentation is essential for audit readiness and continued code compliance.

  • Lesson 3 • Fitness-for-Service Assessment Basics

    Introduces API 579/ASME FFS-1 assessment levels for common damage mechanisms. Practitioners determine whether degraded equipment can continue safe operation.

  • Lesson 4 • Pressure Relief Device Inspection

    Details inspection, testing, and maintenance requirements for pressure relief valves and rupture disks. Ensures overpressure protection remains functional throughout the equipment service life.

  • Lesson 5 • Thickness Measurement and Monitoring

    Covers ultrasonic thickness measurement, corrosion rate calculation, and remaining life estimation. Practitioners use these results to schedule repairs and set next inspection dates.

Chapter 8See details

Advanced ASME Design and Compliance Strategy

  • Lesson 1 • Design-by-Analysis Methods

    Applies elastic stress analysis, limit load, and elastic-plastic methods from BPVC Division 2. Practitioners evaluate complex geometries that exceed design-by-rule applicability.

  • Lesson 2 • Code Compliance Audits and Surveys

    Prepares practitioners to conduct and respond to ASME certificate holder audits and jurisdictional surveys. Systematic audit preparation reduces findings and maintains certification status.

  • Lesson 3 • Emerging Technologies and Code Evolution

    Examines additive manufacturing, composite materials, and digital twin integration within the ASME code framework. Practitioners anticipate code changes and position organizations for future compliance.

  • Lesson 4 • Quality Management System for ASME Work

    Covers the ASME Quality System Certificate requirements and quality manual structure. A compliant quality system is the foundation for obtaining and retaining ASME stamps.

  • Lesson 5 • Resolving Code Conflicts and Interpretations

    Provides strategies for resolving conflicts between code editions, jurisdictional requirements, and project specifications. Practitioners document resolution rationale to protect project integrity.

Certification

Your valid completion certificate

This course is for you:

  • Mechanical engineers seeking structured mastery of pressure equipment codes.

  • Piping designers who need confidence selecting the right B31 section.

  • Inspection technicians ready to move into code-compliance leadership roles.

  • Plant integrity engineers managing aging pressure equipment in operating facilities.

  • Quality assurance professionals responsible for maintaining ASME certificate holder status.

  • Early-career engineers building a foundation in pressure equipment regulatory requirements.

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