About this service
I provide engineering-focused Finite Element Analysis (FEA) of mechanical components and structures to evaluate structural performance, identify critical behaviour and support design decisions.
Depending on the engineering problem, the analysis may include linear or nonlinear structural behaviour, appropriate material modelling, contact, boundary conditions and defined load cases.
Typical scope may include:
• Review and preparation of CAD/FE geometry
• FE model preparation or model review
• Material definition and engineering assumptions
• Load cases and boundary-condition setup
• Linear and nonlinear structural analysis
• Stress, strain, deformation and reaction-force assessment
• Identification of critical locations and failure modes
• Engineering interpretation of results and design recommendations
• Technical analysis report
I work with LS-DYNA, Radioss/OpenRadioss, Abaqus, ANSYS and HyperMesh, selecting the appropriate solver and modelling approach based on the component, loading, required fidelity and available reference/test data.
The final scope is established from the geometry, material, loading, required analysis fidelity and available engineering/test information.
I provide engineering-focused Finite Element Analysis (FEA) of mechanical components and structures to evaluate structural performance, identify critical behaviour and support design decisions.
Depending on the engineering problem, the analysis may include linear or nonlinear structural behaviour, appropriate material modelling, contact, boundary conditions and defined load cases.
Typical scope may include:
• Review and preparation of CAD/FE geometry
• FE model preparation or model review
• Material definition and engineering assumptions
• Load cases and boundary-condition setup
• Linear and nonlinear structural analysis
• Stress, strain, deformation and reaction-force assessment
• Identification of critical locations and failure modes
• Engineering interpretation of results and design recommendations
• Technical analysis report
I work with LS-DYNA, Radioss/OpenRadioss, Abaqus, ANSYS and HyperMesh, selecting the appropriate solver and modelling approach based on the component, loading, required fidelity and available reference/test data.
The final scope is established from the geometry, material, loading, required analysis fidelity and available engineering/test information.
I provide engineering-focused Finite Element Analysis (FEA) of mechanical components and structures to evaluate structural performance, identify critical behaviour and support design decisions.
Depending on the engineering problem, the analysis may include linear or nonlinear structural behaviour, appropriate material modelling, contact, boundary conditions and defined load cases.
Typical scope...
read more
I provide engineering-focused Finite Element Analysis (FEA) of mechanical components and structures to evaluate structural performance, identify critical behaviour and support design decisions.
Depending on the engineering problem, the analysis may include linear or nonlinear structural behaviour, appropriate material modelling, contact, boundary conditions and defined load cases.
Typical scope may include:
• Review and preparation of CAD/FE geometry
• FE model preparation or model review
• Material definition and engineering assumptions
• Load cases and boundary-condition setup
• Linear and nonlinear structural analysis
• Stress, strain, deformation and reaction-force assessment
• Identification of critical locations and failure modes
• Engineering interpretation of results and design recommendations
• Technical analysis report
I work with LS-DYNA, Radioss/OpenRadioss, Abaqus, ANSYS and HyperMesh, selecting the appropriate solver and modelling approach based on the component, loading, required fidelity and available reference/test data.
The final scope is established from the geometry, material, loading, required analysis fidelity and available engineering/test information.
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