
Mechanical Engineer with strong foundations in mechanical design, industrial maintenance, production systems, automation, and mechatronics. Hands-on experience in mechanical systems integration, CAD design, prototyping, electromechanical troubleshooting, and industrial robotics. Experienced in both industrial environments and research-oriented engineering projects, with the ability to move from design and simulation to real-world implementation. Adaptable profile suitable for maintenance engineering, mechanical design, production engineering, automation, and research engineering roles.
SolidWorks | Fusion 360 | Autodesk inventor | CATIA | MATLAB/Simulink | Abaqus | Technical drawings | Design for manufacturing | Finite Element Method
Sensor integration | Data acquisition & calibration | Real-robot experiments | prototyping (3D printing)
ROS 2 | Mobile robot control & differential drive | Modbus TCP/IP | Sensor fusion (LiDAR, odometry) | Robot simulation (Webots, Gazebo, Rviz)
Machining processes (turning, milling) | welding | forming processes | Production systems | CNC machining basics.
Scientific writing | Literature review & bibliographic research | Data visualization & technical presentations
Python | NumPy | Pandas | Matplotlib | C/C++ (embedded control) | Git/GitHub | Linux (Ubuntu environment, bash scripting, ROS development)
Developed an autonomous mobile robot combining simulation and real-world deployment, focusing on SLAM, ROS 2 integration, and sensor fusion.
Explored robotic arm dynamics and control strategies through simulation to achieve accurate motion planning and precision control.
Full machine design of a semi-automated welding system in SolidWorks to improve efficiency
Successful completion of all the course assessments and at least 80% of the course activities on the foundational functions of dialogue and facilitation and the application of the foundational facilitation toolbox
CEFR Level: B2 | Overall Band Score: 6.5 - November 2024
Native/Bilingual
Full professional proficiency
Basic