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This elegant engagement ring features a stunning pear-cut center stone set elegantly within a beautifully crafted twisted split shank, perfectly balancing classic romance with a modern aesthetic. The model is meticulously crafted for high-end jewelry manufacturing, offering clean surfaces, smooth transitions, and excellent structural integrity tailored for casting. Every curve of this graceful solitaire design has been optimized to ensure a flawless transition from the digital CAD environment to the final precious metal piece.
Technical Production InformationRing Size: US 6.5
Center Stone: 1 piece, Pear cut, 8.50 x 5.50 mm, approx. 0.95 carats
Shank Base Width: 1.70 mm
Shank Base Thickness: 1.80 mm
Upper Shank Width: 4.20 mm
Setting Height: 4.55 mm
Estimated Metal Weights:14K Gold: Approximately 3.49 grams
18K Gold: Approximately 4.18 grams
Platinum: Approximately 5.45 grams
925 Sterling Silver: Approximately 2.81 grams
File Format InformationThe download includes industry-standard formats to accommodate all professional workflows. You will receive the native CAD source format (3DM) for direct editing, the stereolithography format (STL) optimized for 3D printing, and universal mesh formats (OBJ, FBX) for seamless integration into studio rendering environments.
Manufacturing and ReadinessThis model has been rigorously verified through industry-standard mesh repair protocols. It is delivered as a fully watertight, non-manifold-free, closed solid body. The geometry is completely prepared for high-resolution resin 3D printing and subsequent investment casting. Tolerances, prong lengths, and thicknesses have been strategically calculated to allow for standard metal shrinkage, filing, and final high-polish finishing.
Professional Services AvailableIf you require this design adapted to alternative stone sizes, different ring dimensions, or wish to commission exclusive custom jewelry modeling services, please feel free to reach out. I am available for direct collaboration and bespoke CAD development to meet your specific manufacturing requirements.
REVIEWS & COMMENTS
accuracy, and usability.
