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Comprehensive Guide to 3D Object Concept Generation and Development Steps

This document outlines a structured approach to 3D object development, focusing on concept generation across easy, intermediate, and difficult object categories. It includes design possibilities, varying dimensions and materials, and innovative ideas for unique structures. Detailed examples encompass items like spiked footballs, PVC tubes, and nested dolls, emphasizing material variations and size combinations. The plan also covers next steps for finalizing designs, obtaining approvals, and material ordering, ensuring a streamlined process for creating diverse 3D objects while maximizing flexibility and minimizing costs.

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Comprehensive Guide to 3D Object Concept Generation and Development Steps

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  1. 3D Object Development

  2. Agenda • Concept Generation • Design Idea Possibilities for each category • Easy objects • Intermediate objects • Difficult objects • Next Steps • Question and Answer

  3. Phase 1 of Concept Generation • Building Material

  4. Phase 2 of Concept Generation

  5. Phase 3 of Concept Generation Key X means different = means the same

  6. Easy Object SetVary in all dimensions Spiked Football (6” in length) Basketball Toy (6” long, 2.5” diameter) Tire (6” diameter and 2” deep) Kong (5.5” length)

  7. Easy Object SetVary in all dimensions Rubber Bolt (6” in length) Double Helix (4” length) High Heel (Height 3”) Pork Chop (5.5” length)

  8. Easy Object SetVary in all dimensions Punk-U-Pine (6” in length by 4” height) Cube (5” length) • Chock (6 Inches, Depth 8 Inches, Width 10 Inches) • Chock (Width 9 1/2 In., Height 6 In., Depth 8 In)

  9. Easy Object SetVary in all dimensions Name: House Category: Different shape, material, and size. B Top Side View Front View C 5” A 3.5“ 2.5 “ 2.5“ Source- Lowes

  10. Easy Object SetVary in all dimensions Category: Different shape, material, and size. Name: Under Armor Top B Side View Front View C 6.5” A 2.5 “ Source- Lowes

  11. Easy Object SetVary in all dimensions Category: Different shape, material, and size. Name: Double Wye Top B Side View Front View C A Source- Lowes

  12. Easy Object SetVary in all dimensions Category: Different shape, material, and size. Name: Bowl A Top View Front View B C Source- Lowes

  13. Idea #1: Filled PVC tubes of differing shapes and sizes • Idea #2: Steel coated with foam in differing shapes and sizes • Idea #3: Various filled bottles www.sportsbottlesusa.com

  14. Intermediate Set BVary in size and material but same shape • Idea #1: Tupperware or Russian nesting dolls (same shape, different sizes) filled with different materials (sand, sawdust, metal scraps, gravel)

  15. Intermediate Set CVary in material and shape but same size • Idea #1: Same sized, differently shaped bottles, filled with different materials • Idea #2: Same sized, differently shaped combinations of pipe (steel, brass, alum, plastic)

  16. Difficult Set DSame in material and shape but vary in size • Idea #1: Russian nesting dolls filled with same material • Idea #2: Same-shaped spatulas of increasing size, all same material • Idea #3: Same-shaped bottles of increasing size, filled with same material

  17. Difficult Set DSame in material and shape but vary in size • Idea #4: PVC cross-shape of increasing size, all filled with same material PVC Top B Side View Front View C A

  18. Difficult Set ESame in size and shape but vary in material • Idea#1: Same sized, same shaped bottles, filled with different materials

  19. Difficult Set FSame in size and material but vary in shape

  20. Difficult Set FSame in size and material but vary in shape

  21. Combinations of Objects

  22. Combinations of Objects • How many combinations are actually desired? • For instance, 6 objects whose size, shape, and material all differ will yield 20 different possible combinations of 3. • Taking this further, pulling 6 objects whose size, shape, and material all differ from the intermediate and difficult sets would equate to 6 easy objects with 20 possible combinations.

  23. Combinations of Objects E A C D F B

  24. Combinations of Objects • If we take this route, we would need to know the number of desired combinations of objects for a given set • Planning the objects in this way would reduce the number of objects to be created (and thus their overall cost), while not limiting the flexibility for the experiment.

  25. Next Steps • Finalize more of the designs for each category after review • Receive approval from Dr. Delong and the personnel at the aquarium • Order the material • Build the objects

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