Aluminum System Structural Validation
Budget / Salary$250–750
TypeFreelance project
LocationRemote
Posted4 hours ago
I need a thorough structural calculation and performance check on a newly designed aluminum profile system, with special focus on the largest 3 m × 3 m configuration before cascading the findings to the smaller variants. The study must cover both static and dynamic load analysis so that I can confirm each profile, connection detail, reinforcement option, and fixing method is truly fit for purpose.
Material fatigue is my prime concern, so the calculation package has to explore long-term cyclic effects alongside the usual strength and stiffness checks. If you spot joint failure or deformation risks during the process, flag them, but the fatigue life is the critical pass/fail criterion.
Please ground every assumption in recognised codes and clearly document the input data, equations, safety factors, and results. Finite-element modelling, hand verification sheets, and concise summary tables are all welcome as long as they tell a coherent story.
Deliverables:
• Full calculation report (PDF) with static & dynamic analyses, fatigue assessment, and code references
• Editable analysis files (e.g., FEA model, spreadsheets)
• A short design-change memo if any modifications are needed to meet the target capacities
When you reply, highlight relevant experience with aluminium structures and any similar projects you have taken from concept to verification.
Scope of Structural Analysis
The consultant/structural engineer shall analyze the newly developed aluminum system considering:
Aluminum profile dimensions and geometry
Aluminum alloy and mechanical properties
Profile thicknesses
Profile section properties
Span and unsupported lengths
Connection and joint details
Corner connections
Fixing methods
Wall/structure attachment methods
Internal reinforcement, where applicable
Glass/panel loading, where applicable
Dead loads
Operational loads
Wind loads for externally exposed systems
Deflection limits
Stress and utilization ratios
Local buckling and overall stability
Connection capacity
Load transfer between individual components
Structural adequacy of the complete assembled system
Material fatigue is my prime concern, so the calculation package has to explore long-term cyclic effects alongside the usual strength and stiffness checks. If you spot joint failure or deformation risks during the process, flag them, but the fatigue life is the critical pass/fail criterion.
Please ground every assumption in recognised codes and clearly document the input data, equations, safety factors, and results. Finite-element modelling, hand verification sheets, and concise summary tables are all welcome as long as they tell a coherent story.
Deliverables:
• Full calculation report (PDF) with static & dynamic analyses, fatigue assessment, and code references
• Editable analysis files (e.g., FEA model, spreadsheets)
• A short design-change memo if any modifications are needed to meet the target capacities
When you reply, highlight relevant experience with aluminium structures and any similar projects you have taken from concept to verification.
Scope of Structural Analysis
The consultant/structural engineer shall analyze the newly developed aluminum system considering:
Aluminum profile dimensions and geometry
Aluminum alloy and mechanical properties
Profile thicknesses
Profile section properties
Span and unsupported lengths
Connection and joint details
Corner connections
Fixing methods
Wall/structure attachment methods
Internal reinforcement, where applicable
Glass/panel loading, where applicable
Dead loads
Operational loads
Wind loads for externally exposed systems
Deflection limits
Stress and utilization ratios
Local buckling and overall stability
Connection capacity
Load transfer between individual components
Structural adequacy of the complete assembled system
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