Design Pressure Vessel with Abaqus (ASME VIII Division 2 Compliance)

Advanced Vessel Design, Simplified with Abaqus

This course offers a comprehensive study of ASME VIII Division 2 and a detailed introduction to the modeling and analysis capabilities of Abaqus. It teaches you how to design a pressure vessel using Abaqus that complies with the ASME VIII Division 2 standard.

What’s in For You

Module 1: Overview of Abaqus
  • What is Abaqus FEA?
  • Abaqus/CAE
  • Abaqus/Standard and Abaqus/Explicit
  • Abaqus Conventions
  • Working with the Model Tree
  • Other Abaqus/CAE Topics
  • Documentation
  • Learning Community
  • Abaqus Environmental Settings
  • Abaqus Fetch Utility
  • Abaqus/CAE: Part Module
  • What are Parts?
  • Creating Part Geometry
  • Building a Part Using the Part Module Tools
  • The Sketcher
  • Adding Features
  • Workshop 2: Creating Native Geometry- Pipe Creep Model
  • Abaqus/CAE: Part Module
  • Geometry Import and Repair
  • Part from an Orphan Mesh
  • Creating Geometry from an Orphan Mesh
  • Abaqus/CAE: Property Module
  • Abaqus Material Definitions
  • Abaqus Conventions
  • Linear Elasticity
  • Large Strain Elasticity
  • Metal Plasticity
  • Material Calibration
  • Section Properties
  • Special Features: Skin and Stringers
  • Abaqus/CAE: Assembly Module
  • What is Assembly?
  • Positioning Instances
  • Other Operations
  • Sub-assemblies
  • Sets
  • Surfaces
  • Display Groups
  • Instance Types
  • Abaqus/CAE: Step Module
  • Analysis Steps and Procedures
  • Demonstration 6a: Creating Steps
  • Output Requests
  • Output Files
  • Abaqus/CAE: Load Module
  • Amplitudes and Distributions
  • Loads and Boundary Conditions
  • Initial Conditions
  • Abaqus/CAE: Mesh Module
  • What is a Mesh?
  • Elements in Abaqus
  • Mesh Generation Workflow
  • The Mesh Module
  • Dependent and Independent Part Instances\
  • Abaqus/CAE: Job Module
  • Analysis Jobs
  • Creating a Job
  • The Job Manager
  • Monitoring the Progress of an Analysis
  • Keywords Editor
  • Demonstration 8a: Using the Keywords Editor
  • Viewing and Interpreting Results
  • Abaqus/CAE: Visualization Module
  • Viewing and Interpreting Results
  • Output
  • Is my problem nonlinear?
  • What are the main sources of nonlinearities?
  • Why are nonlinear problems hard to solve?
  • How are nonlinear problems solved?
  • The static, general analysis procedure
  • Finding a converged solution
  • Linear Perturbation Procedures
  • The Static, Linear Perturbation Procedure
  • Buckle Procedure
  • Frequency Procedure
  • Multistep Analyses
  • The Dynamic, Explicit Analysis Procedure
  • Stability Limit
  • Finding a Solution Faster
  • Troubleshooting Abaqus/Explicit Analyses
  • Analysis Continuation Techniques
  • Restarting an Abaqus Analysis
  • Introduction
  • Rigid Body Constraint
  • Tie Constraint
  • Shell-to-Solid Coupling
  • Connector Elements
  • Mesh-independent Fasteners
  • Introduction
  • Mechanical Contact Properties
  • Contact Domain
  • Contact Formulation and Controls
  • Introduction
  • General Requirements
  • Scopes
  • Numerical Analysis
  • Loading Conditions
  • Protection Against Plastic Collapse
  • Protection Against Local Failure
  • Protection Against Collapse From Buckling
  • Protection Against Failure From Cyclic Loading

Why You Need This

Build complete finite element models confidently in Abaqus/CAE

Submit and monitor analysis jobs with Abaqus/CAE

View and evaluate simulation results effectively

Solve structural problems using Abaqus/Standard and Abaqus/Explicit

Understand ASME VIII Division 2 pressure vessel design rules

Design ASME VIII Division 2 compliant pressure vessels in Abaqus/CAE

Why Us?

  • Designed for your exact application
  • Delivered by experienced engineers
  • Aligns with your tools, standards and workflows
  • Practical content your team can apply immediately
  • HRDC Claimable

OUR COMMITMENT TO EXCELLENCE ​

Speed Like Never Before
Place order today, test tomorrow, ship the next day; it's really that fast.
Avoiding Logistics Issues
Logistic nightmare; exorbitant cost, time-consuming, and potential malfunction
Engineer Availability & Mobility
Engineer availability; mobility within the factory, this is efficient
Advanced Technology Integration
Advanced tech, seamless performance; optimize today, succeed tomorrow
Education & Transparency
Education and witness; for the first time you can now see how it is done.