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Anonymous1775343454
04-04 23:12
Model Name
unmanned aerial vehicle 3d model
Tags
fuselage
realistic
rendering
rendering realistic
unmanned aerial vehicle
vehicle
vehicle realistic
vehicle rendering
vehicle rendering realistic
Input
Prompt
Detailed 3D CAD model generation task of an unmanned aerial vehicle (UAV) based on three-view orthographic drawings and perspective references from provided images (specifically image_15.png). Core Subject: Unmanned Aerial Vehicle (UAV), variant "Aethel-1 Echo". Configuration: A tailless delta-wing flying wing with a single rear central pusher propeller pod. Dimensions and Proportions: Strictly follow the 1:1 scale ratios indicated. Span: 2100mm. Total Length: approximately 3390mm. Propeller Diameter: 190.0mm. Planform details (Top/Bottom view): Smooth, moderate-sweep delta-wing planform with integrated elevon surfaces. A smooth central fuselage pod is visible on top and bottom. Small, twin inner vertical rudders are integrated on the rear wing structure. Elevation details (Side view): Flat delta-wing profile with a pronounced but streamlined central pod that houses the radome, payload bay, and rear motor. Three-wheeled (tri-cycle) wheeled landing gear, fully extended. Frontal details: Flat delta-wing dihedral with integrated nubs for antennas. Clear nose radome section. Distinctive Structural Features (Hard-surface): 1. Materials: The entire airframe (wings and fuselage) should have a detailed brushed metallic finish, resembling thin 0.3mm galvanized steel panels, with visible panel lines and a detailed rivet pattern throughout the structure. 2. Nose: The nose radome is semi-transparent, revealing a complex, internal tri-corner retro-reflector (trijedar) mechanism clearly visible through the dome. 3. Propulsion: A central rear pusher pod containing the motor (T-Motor style) with a large, two-bladed folding propeller mechanism attached, showing the blades partially folded. 4. Internal: Mid-wing modular payload bays are defined by panel line structure and small screw details. Output Requirements: Clean, manifold geometry, optimized UV maps, high poly detail, photorealistic PBR material properties. A single OBJ or STEP file output is preferred.
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