At ST Engineering Land Systems, we design and deliver advanced land defence platforms that support armed forces in achieving mission success and operational superiority. Our Structure and Mechanisation Centre plays a vital role in the design of military vehicle hulls, ballistic protection systems, and crew ergonomics, ensuring performance, protection, and survivability.
As part of a global engineering and defence group, we are committed to innovation, sustainability, and a safer world. Join us as we reimagine land mobility through advanced engineering and next-generation manufacturing.
Key Responsibilities
As a Hull Structure Engineer, you will:
- Assist in the design and structural development of armoured vehicle hulls, subframes, and welded assemblies to meet protection and mobility requirements.
- Use Siemens NX for detailed CAD modelling, drafting, and product definition of structural components and assemblies.
- Perform basic structural analysis and verification of designs, including static strength, fatigue, and modal behaviour where applicable.
- Contribute to the selection and integration of materials, particularly for ballistic and blast protection (e.g., high-hardness steels, aluminium alloys, composites).
- Support prototyping, integration, and field validation of hull systems and mechanical structures.
In addition, you will:
- Participate in the redesign of mechanical and structural components for Additive Manufacturing (DfAM) to improve weight, performance, or manufacturability.
- Collaborate with cross-disciplinary teams in Manufacturing, Materials Engineering, and R&D to evaluate AM use cases and validate printed components.
- Apply best practices for DfAM in terms of topology optimization, print orientation, support strategy, and post-processing.
Requirements
- Bachelor’s Degree in Mechanical Engineering, Aerospace Engineering, or a related field
- Entry Level candidates are welcome to apply
- Experience or formal training in Siemens NX for part and assembly modelling, drafting, and design documentation.
- Knowledge of mechanical structures, materials, and manufacturing processes.
- Basic understanding of structural mechanics and analysis methods.
- Interest in Additive Manufacturing and its applications in mechanical design.
- Familiarity with DfAM principles and 3D printing technologies (especially metals).
- Good understanding of design for manufacturing and assembly (DFMA).
- Enthusiastic about defence systems, innovation, and applied engineering.
- Strong team player with a self-driven attitude and attention to detail.