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Anonymous1762701917
11-29 03:52
Model Name
terracotta vase 3d model
Tags
props
rendering
realistic
Input
Prompt
1. Geometrical Components (Topological Analysis) The Jebena is typically composed of three main parts: • The Body (Belly/Vessel): • Shape: Predominantly spherical or piriform (pear-shaped), serving as the main reservoir. • Base: Features a slightly flattened circular bottom to ensure stability (though some traditional designs are fully rounded for placement directly into embers). • Function: Holds the water and ground coffee for the boiling process. • The Neck and Opening (Spout): • Shape: A tall, narrow, cylindrical neck that rises from the top of the spherical body. It slightly widens at the very top to form the main opening. • Function: Serves as the primary pouring spout and the entry point for water and coffee grounds. A small cap (not always modeled with the vessel) sits here. • The Handle (Grip): • Shape: A curved, sturdy clay strip (like a 'C' or semi-circle) attached to the upper shoulder of the body and the base of the neck for safe handling and pouring. 2. Material & Aesthetic Properties (Texture Mapping) • Material: Earthenware/Clay (Fakhār). • Surface Texture: The material should exhibit a rough, unglazed, or rustic texture typical of fired clay. Avoid high gloss or reflective surfaces. • Color Scheme: Deep earthen tones—dark brown, reddish-brown, or black (often blackened from fire use). • Details: Include minor, subtle vertical etchings or indentations on the body, common in traditional designs, to enhance realism. 📐 Detailed Requirements for Your 3D Model To meet your specific fabrication and scale requirements: 1. Scale: 4.5 Centimeters (Scale Factor) The final model must adhere to a maximum dimension of \bm{4.5\text{ cm}}. • Total Height (\bm{H_{Total}}): \bm{4.5\text{ cm}}. • Proportional Breakdown (Approximate): • The spherical body usually constitutes about two-thirds (2/3) of the total height. • The cylindrical neck is the remaining one-third (1/3). • Example: Body \bm{\approx 3.0\text{ cm}}, Neck \bm{\approx 1.5\text{ cm}}. 2. High Infill (3D Printing Optimization) The request for "High Infill" (الأنفل العالي) refers to the internal density used in Fused Deposition Modeling (FDM) 3D printing. • AI/Modeling Requirement: To ensure the printability and strength of the small model, the design must be modeled as a Manifold (Watertight) Solid Body. • Wall Thickness: Given the small scale (\bm{4.5\text{ cm}}), ensure the wall thickness and handle cross-section are appropriately thick (e.g., \bm{1\text{ mm}} or more, depending on the printer tolerance) to support the high infill or a 100% solid fill setting during slicing.
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