Crane FEM Consulting

Structural Analysis

STRUCTURAL ANALYSIS

Structural analysis and FEM simulations for real operating conditions

We provide advanced finite element analysis to evaluate structural strength, stiffness, stability and fatigue under real operating loads and boundary conditions. The results support safe, reliable and optimized design decisions.

> Linear and non-linear analysis
> Fatigue assessment
> Load case development
> Buckling and stability analysis
> Optimization and design validation

OUR CAPABILITIES

STATIC ANALYSIS

Stress, strain and deformation assessment under operational and extreme loading conditions

FATIGUE ANALYSIS

Fatigue performance and service life assessment under repeated and cyclic loading conditions

BUCKLING ANALYSIS

Structural stability and critical buckling assessment under compressive loading conditions

NON-LINEAR ANALYSIS

Structural behavior assessment considering large deformation, contact effects and material non-linearity under operating loads

STRUCTURAL ASSESSMENT

Engineering analysis focused on critical structural behavior

Structural components are evaluated under realistic load combinations to identify critical areas, excessive deformation, stress concentrations and potential stability issues

Analysis results are used to verify structural performance and support design improvements before manufacturing or modification

> Stress and deformation evaluation
> Critical area identification
> Buckling and stability verification
> Fatigue-sensitive area assessment
> Design modification recommendations

DESIGN VERIFICATION

Analysis results that support confident engineering decisions

Structural analysis is not limited to identifying stresses and deformations. Results are evaluated against applicable design criteria to determine whether the structure meets strength, stability and fatigue requirements

INITIAL DESIGN

Сritical stress concentration identified

OPTIMIZED DESIGN

Improved load distribution after modification

Where required, design modifications are developed and re-evaluated to improve structural performance, reduce critical stresses and achieve an efficient final design

> Strength and stiffness verification
> Stability and buckling verification
> Fatigue life assessment
> Design optimization and re-analysis