Mechanical · CAD & Manufacturing

Complete Product Design (CAD + FEA + Manufacturing)

Advanced 6 weeks 40-70 hours

Design a real product in CAD, 3D print it, then physically load-test it with weights to validate your FEA stress predictions. Bridges design and real-world testing.

Major

Mechanical

Focus area

CAD & Manufacturing

Total hours

40-70 hours

What you'll need

  • PLA PETG 3D printer filament 1.75mm 1kg
  • load cell 5kg with HX711 amplifier weight sensor kit
  • Arduino Uno R3 ATmega328P microcontroller board
  • digital caliper 6 inch stainless steel measuring tool
  • calibration weight set for testing
  • dial indicator gauge 0.001 inch measurement tool
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Steps

  1. Pick a real product like a bracket or phone stand and design it in CAD.
  2. Run FEA to predict stress and deflection under your target load.
  3. 3D print the part and measure its dimensions with calipers.
  4. Build a load test rig with the load cell and dial indicator.
  5. Load the part with weights, measure deflection, and compare to your FEA prediction.
  6. Document the full design cycle for your portfolio.

What to photograph for your portfolio

  • CAD exploded view
  • printed part
  • load test vs FEA prediction
  • deflection measurements

Resume bullet starters

Copy one, then swap in your own numbers.

  • Designed and built a complete product design using CAD design, FEA validation, 3D printing

  • Applied mechanical testing and GD&T to implement, test, and validate the system end-to-end

  • Quantified performance with [insert your result, such as accuracy, error reduction, response time, or load capacity] after iterative tuning

Skills you'll show off

CAD designFEA validation3D printingmechanical testingGD&T

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