Designer
Rajasekars
Mechanical CAD Expert | CATIA, NX, CREO, SOLIDWORKS, SOLIDEDGE Specialist
Automation Line, including grippers, nut runner tools, and press fixtures — selecting commercial actuators, sensors, and developing modular tool concepts • Applied DFM/DFA and GD&T principles; participated
Designer
Mathivanan98
Mechanical Design Engineer
shutters. Developed mechanical components, assemblies, and control integration with sensors and actuators. Created manufacturing-ready drawings, BOMs, and supervised prototype builds. 🔹 Drone Design –
Job
Mechanical Design Engineer (SolidWorks) – Biomass Egg‑Tray Dryer
Conveyor chain support & sprocket units
Detail Components
Pneumatic gravity chute (slides, actuators)
Vortex nozzle geometry
Burner flange and mounting details
Deliverables
Native SolidWorks
3D Model
Mechanical engineering designs
applications. I also design hydraulic & pneumatic elements, such as valves, cylinders, & any type of actuators, as per client’s requirement. 4) Civil engineering, Architecture & structural engineering: I worked
Designer
Chilkunda
Machine Design
applications. I also design hydraulic & pneumatic elements, such as valves, cylinders, & any type of actuators, as per client’s requirement. 4) Civil engineering, Architecture & structural engineering: I worked
Designer
apomameriea
Robotics & CAD Design Professional with Expertise in 3D Modeling and Automation Systems
applications. Electronics Integration: Experience designing PCB layouts and integrating sensors, actuators, and control logic into complete systems. IoT & Web Interfaces: Building React Native mobile apps
Designer
AH-BILAL
Mechanical Design Engineer | Product Design | CSWP | DFM, DFA, FEA & CFD
with ANSYS, SolidWorks, COMSOL and Abaqus ➤Electro-Mechanical Systems: Designing and integrating actuators, sensors, and motion control systems for automation solutions ➤Product Development: From concept
Job
Stacker mobile belt conveyor design
pulleys.
Support Structure: Legs, outriggers, stabilizers.
Hydraulic/Electrical Mechanisms: Motors, actuators, or control panels.
Assign part numbers and names for easy tracking.
4. Develop Detailed Fabrication
Skill
Controls Design
under control. The measurements in question are then utilized for giving feedbacks to your input actuators. These can also help to establish corrections, which can then be applied to the desired performance
Skill
Motion Dynamics Design
because from assembly, the designer can create a motion model that contains forces, constraints and actuators. They can simulate motion by using a powerful simulation software and then review the results such