Perform hand calculations to determine the structural integrity, load distribution, stress analysis, and sizing of Aerostructure components.
Apply engineering principles and analytical methods to assess the strength, stiffness, and stability of structural elements.
Conduct calculations for factors such as static loads, dynamic loads, fatigue life, and buckling to ensure compliance with safety regulations and design requirements.
Analyze and interpret calculation results to provide recommendations for design modifications or improvements based on structural analysis findings.
Design and optimize Aerostructure components made of composite materials, considering factors such as weight, strength, durability, and manufacturing feasibility.
Select appropriate composite materials, including fibers, resins, adhesives, and core materials, based on performance requirements and material properties.
Utilize analytical methods and software tools to analyze composite structures, including laminate analysis, sandwich structures, and failure prediction.
Conduct structural analysis and calculations specific to composite materials, such as ply-by-ply stress analysis, inter laminar shear stress, and composite stiffness properties.
Utilize hand calculations and composite analysis techniques to optimize the design of Aerostructure components for weight reduction, performance enhancement, and cost efficiency.
Collaborate with multidisciplinary teams, such as aerodynamics, systems engineering, and manufacturing, to integrate the structural design with overall aircraft requirements and specifications.
Create design documents, including structural calculations, analysis reports, and technical specifications, to ensure proper documentation of the design process and compliance with regulatory requirements.
Collaborate with manufacturing engineers and technicians to provide guidance on composite manufacturing processes, tooling, and equipment.
Support manufacturing activities by addressing technical issues, conducting root cause analysis, and implementing corrective actions related to composite structures.
Stay updated with the latest advancements in hand calculation methods, composite materials, and structural analysis techniques.
Conduct research to explore new composite materials, manufacturing processes, and innovative structural design concepts.
Bachelor's/Master’s/PHD degree in aerospace engineering, mechanical engineering, physics, mathematics or related ï¬elds may be preferable
3-8 years’ experience in the ï¬xed wing/hybrid Airframe Structure
Advanced proficiency in Structure,Fatigue, Aeroelasticity & Damage Tolerance
Have done the airframe load and stress analysis using analytical calculations
Advanced knowledge of Finite Element Analysis, Vibration & Composite Modeling
Experience with FEA Tool & Matlab.etc
Intermediate to expert-level background using CAD software such as Autodesk, Fusion, Catia, NX Siemens, Solidworks etc
Perform Design Modifications as per need and validating the same with Computational Tool
Strong attention to detail and the ability to assess problems quickly and easily
Should have knowledge about Geometric Dimension & Tolerance
Ability to work collaboratively and seek assistance to solve problems
Proven experience working within different operating systems, including Windows, Linux, and MacOS
Demonstrate Accountability and Commitment in securing Quality, Delivery and Product feature
Good communication skills, Learning on fly, Team player, Emphasis on Detailing & Problem-solving skills
Passion to take up challenges at work
Competitive Salary & Stock Options.
We invest in personal growth.
Travel & Fieldwork opportunities.
Your ideas and opinions matter to us.
Copyright © 2026 Grabjobs Pte.Ltd. All Rights Reserved.