Electric Battery Lift CAD & Analysis
Budget: ₹12,500 – ₹37,500 INR
I need a production-ready CAD design for an electric battery lift mechanism used inside a compact consumer-electronics device. The lift must rise vertically and then rotate to present the battery for easy removal, all within a tight envelope. Along with the 3D model I also require mechanical analysis to validate durability, stress limits, and smooth motion.
Key points you should know:
• Motion profile: first a controlled vertical lift, then a 90-degree rotation (or equivalent) in one continuous sequence.
• Actuation: electric only—no hydraulics or pneumatics.
• Form factor: sized for handheld or desktop electronics, so space, weight, and noise are critical.
• Materials and fasteners should favour mass-production methods such as injection-moulded plastics with metal inserts or stamped aluminium parts.
• I will supply overall product dimensions and mounting points once we start.
Deliverables
• Native CAD files (SolidWorks or Inventor preferred) and neutral formats (STEP, IGES)
• Fully dimensioned manufacturing drawings with tolerances
• Bill of materials with suggested suppliers
• Simulation report (FEA/kinematic) showing factor of safety, motor torque requirements, and life-cycle estimates
• Short video or animation illustrating the combined lift-and-rotate motion
Acceptance Criteria
1. Mechanism fits within allotted volume.
2. Simulation demonstrates ≥2× safety factor under expected loads.
3. Rotation completes smoothly in under two seconds with no interference.
4. All components ready for tooling without further redesign.
If this challenge aligns with your expertise in precision electromechanical design, I’m ready to dive into specifics and set milestones right away.
Key points you should know:
• Motion profile: first a controlled vertical lift, then a 90-degree rotation (or equivalent) in one continuous sequence.
• Actuation: electric only—no hydraulics or pneumatics.
• Form factor: sized for handheld or desktop electronics, so space, weight, and noise are critical.
• Materials and fasteners should favour mass-production methods such as injection-moulded plastics with metal inserts or stamped aluminium parts.
• I will supply overall product dimensions and mounting points once we start.
Deliverables
• Native CAD files (SolidWorks or Inventor preferred) and neutral formats (STEP, IGES)
• Fully dimensioned manufacturing drawings with tolerances
• Bill of materials with suggested suppliers
• Simulation report (FEA/kinematic) showing factor of safety, motor torque requirements, and life-cycle estimates
• Short video or animation illustrating the combined lift-and-rotate motion
Acceptance Criteria
1. Mechanism fits within allotted volume.
2. Simulation demonstrates ≥2× safety factor under expected loads.
3. Rotation completes smoothly in under two seconds with no interference.
4. All components ready for tooling without further redesign.
If this challenge aligns with your expertise in precision electromechanical design, I’m ready to dive into specifics and set milestones right away.
Related categories:
CAD/CAM
Solidworks
Mechanical Engineering
Finite Element Analysis
AutoCAD
Product Design
3D Modelling
3D CAD