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DCC Bridge
Anonymous1768862912
01-19 23:47
Model Name
organic vase 3d model
Tags
3d printing
3d printing realistic
ceramic
organic vase
props
props 3d printing
props 3d printing realistic
props realistic
realistic
Input
Prompt
Create an ultra-accurate, high-resolution 3D model of the vase shown in the reference image, optimized for 3D printing and ceramic slip-casting. Form & proportions: - Organic, asymmetrical sculptural vase with a continuous, flowing silhouette - Rounded, bulbous body rising into a folded, curved upper form - Asymmetrical opening with smooth, rounded edges - Negative-space void clearly defined and accessible for mold release - Slightly flattened, stable base suitable for standing and kiln firing Manufacturing geometry requirements: - Uniform wall thickness throughout (consistent and realistic for ceramic production) - Minimum wall thickness appropriate for slip-casting and 3D printing - Interior cavity accurately modeled, following the exterior form - No undercuts that would prevent mold release - Gentle draft angles incorporated where needed to allow demolding - All transitions smooth and continuous to avoid stress points or cracking - Base thickness increased slightly for stability and weight balance Edge & surface treatment: - All edges softly rounded; no sharp transitions - Lip and opening reinforced subtly for strength - No surface texture; clean, continuous surfaces only Material & finish intent: - Designed as a glazed ceramic object - Surface optimized for high-gloss or satin glaze application - Color applied as material reference only (geometry remains neutral) Topology & output: - Watertight, manifold geometry suitable for fabrication - Clean, evenly distributed topology - No internal floating geometry or non-manifold edges - Ready for export as STL or similar manufacturing formats Goal: Produce a fabrication-ready 3D model that faithfully replicates the organic form of the reference vase while meeting structural, demolding, and production constraints for ceramic slip-casting and 3D printing.
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