3D Printable Organic Flower Handle for Luxury Jewelry Box (Anemone/Berry Center) -- 2
Budget: $30 – $250 USD
Description
We are currently prototyping a high-end luxury jewelry box and require a skilled 3D modeler to create a specific organic flower to serve as the top lid handle. This piece will be 3D printed in castable resin and manufactured in bronze via investment casting.
Design Specifications:
Subject: A stylized Anemone or Blackberry blossom. It features a prominent, textured, berry-like center surrounded by 5 to 6 wide, wavy, organic petals. (Reference images are attached).
Bounding Dimensions: Approximately 50 mm in length and 40 mm in outer diameter.
Technical Engineering Constraints:
Hollowing: The model must NOT be a solid mass. It must be hollowed out from underneath with a constant wall thickness of approximately 1.5 mm to 2 mm to optimize the metal casting process and avoid shrinkage defects.
Mounting: The bottom base must incorporate two blind bosses (suitable for M3 or M4 tapping) for invisible internal fastening to the box lid.
Printability: The final model must be fully watertight, manifold, and perfectly optimized for high-resolution resin 3D printing.
Deliverables:
IGS / IGES format is highly preferred to allow for clean integration into our CAD engineering workflow.
A high-resolution STL file is also required for the 3D printing phase.
Please ensure you review the attached reference images carefully before applying, and kindly link to any similar organic or jewelry modeling work in your portfolio.
We are currently prototyping a high-end luxury jewelry box and require a skilled 3D modeler to create a specific organic flower to serve as the top lid handle. This piece will be 3D printed in castable resin and manufactured in bronze via investment casting.
Design Specifications:
Subject: A stylized Anemone or Blackberry blossom. It features a prominent, textured, berry-like center surrounded by 5 to 6 wide, wavy, organic petals. (Reference images are attached).
Bounding Dimensions: Approximately 50 mm in length and 40 mm in outer diameter.
Technical Engineering Constraints:
Hollowing: The model must NOT be a solid mass. It must be hollowed out from underneath with a constant wall thickness of approximately 1.5 mm to 2 mm to optimize the metal casting process and avoid shrinkage defects.
Mounting: The bottom base must incorporate two blind bosses (suitable for M3 or M4 tapping) for invisible internal fastening to the box lid.
Printability: The final model must be fully watertight, manifold, and perfectly optimized for high-resolution resin 3D printing.
Deliverables:
IGS / IGES format is highly preferred to allow for clean integration into our CAD engineering workflow.
A high-resolution STL file is also required for the 3D printing phase.
Please ensure you review the attached reference images carefully before applying, and kindly link to any similar organic or jewelry modeling work in your portfolio.
Related categories:
Solidworks
3ds Max
3D Modelling
3D Design
3D Printing
Zbrush
CATIA
3D CAD
Rhino 3D
Mold-making & Casting