Overview
EN ISO 18166:2026 - Numerical Welding Simulation – Execution and Documentation defines the processes and guidelines for conducting, validating, verifying, and documenting numerical welding simulations within the framework of computational welding mechanics (CWM). Developed by CEN in cooperation with ISO, this standard specifies requirements for using scientific computational tools (SCTs) to perform thermal and mechanical finite element analysis (FEA) of arc, laser, and electron beam welding. The aim is to enable accurate calculation of the effects of welding, especially residual stresses and distortion, to support structural integrity assessments in design and manufacturing.
Key Topics
- Execution of Numerical Simulations: The standard describes procedures for setting up and running welding simulations, including the selection of simulation strategy, spatial and temporal discretization, and appropriate physical models.
- Validation and Verification: Clear processes for verifying code and validating results against experimental data or trusted computational tools are outlined to ensure the reliability of simulation outcomes.
- Input Data Requirements: EN ISO 18166:2026 details necessary input data, such as welding procedure specifications (WPS), design drawings, material properties, and weld configuration details, to ensure accurate simulation.
- Scientific Computation Tools (SCTs): Requirements for SCTs include support for creating 2D and 3D meshes, modeling heat sources and thermomechanical behavior, and incorporating phase transformations and metallurgical effects.
- Post-Processing and Reporting: Guidelines are given for post-processing simulated results, quantifying uncertainties, and documenting findings in a structured and transparent manner.
- Uncertainty Management: The standard provides recommendations for identifying, ranking, and addressing uncertainties and knowledge gaps in simulation models and data.
Applications
EN ISO 18166:2026 is intended for use across various industries where welding simulations are vital for quality assurance, design, and structural assessment:
- Structural Integrity Analysis: Supports engineers in predicting and managing residual stresses and distortions, which are critical for assuring the reliability and safety of welded structures.
- Design Optimization: Assists manufacturers in optimizing welding processes by simulating the effect of different parameters (e.g., heat input, welding sequence) on final product quality.
- Quality Control and Documentation: Standardizes the documentation of simulation processes and results, making it easier to demonstrate compliance, support audits, and facilitate collaboration.
- Research and Development: Facilitates the comparison and validation of new welding techniques or materials using reliable simulation methodologies.
Related Standards
For comprehensive use of EN ISO 18166:2026 in welding simulation, the following related standards may also be relevant:
- ISO/TR 25901-1: Welding and allied processes – Vocabulary – General terms.
- ISO 5817: Welding – Fusion-welded joints in steel, nickel, titanium and their alloys – Quality levels for imperfections.
- ISO 9606 series: Qualification testing of welders.
- EN ISO 4063: Welding and allied processes – Nomenclature of processes and reference numbers.
Practical Value
By adhering to EN ISO 18166:2026, organizations can:
- Ensure consistency and reliability in numerical welding simulations.
- Improve collaboration between designers, analysts, and manufacturers through standardized documentation.
- Enhance traceability and transparency in welding process qualification and validation.
- Support compliance with both domestic and international requirements for structural integrity and quality assurance in welded assemblies.
Keywords: numerical welding simulation, EN ISO 18166:2026, computational welding mechanics, scientific computation tool, finite element analysis, welding simulation documentation, structural integrity, welding process validation, CEN standard, residual stresses, weld distortion, welded joint analysis.