DESCRIPTION

Product Overview

This high-performance 3D asset represents a cutting-edge, 3D-printable rear motorcycle wheel designed for track-only racing bikes and elite street supersports. Featuring an aggressive, aerodynamic star-pattern spoke layout with a distinct carbon-fiber or technical composite texture, this model strikes the perfect balance between futuristic automotive aesthetics and optimized digital performance. It is engineered to serve as a premium asset for high-end automotive visualization, motorsport simulators, and advanced additive manufacturing prototyping. The 3D model is extremly Highly Detailed.

Design Philosophy & Artistic Inspiration

This asset blends high-velocity aerodynamics with aggressive geometric abstraction, drawing direct inspiration from modern hypercar wheel designs and stealth aviation dynamics. The interlocking, directional 5-spoke star pattern creates a visual sense of continuous kinetic motion, even when stationary. By balancing the bold, muscular cross-sections of the spokes with subtle weight-reduction channels and a technical, layer-by-layer surface texture, this piece reinterprets modern motorsport engineering for the next generation of digital and physical custom bikes.

Key Design & Structural Features

• Directional Star-Pattern Spokes: The primary structure features a precise 3D representation of a 5-spoke rotational star layout, engineered to visually channel torque and provide realistic structural rigidity under high cornering loads.

• Technical Carbon/Composite Texture: The outer surfaces mimic advanced continuous-fiber additive manufacturing or forged composite patterns. The geometry and UV layout are optimized to capture realistic directional light anisotropic reflections.

• Clean, Topology-Optimized Mesh: Meticulously crafted mesh with clean edge flow, ensuring smooth viewport performance and flawless sub-division rendering without sacrificing the crisp, sharp geometric transitions characteristic of CNC-machined and 3D-printed components.

Development & Visual Versatility

This 3D asset is perfectly optimized for professional visual workflows:

• High-End Automotive Rendering (V-Ray, Corona, Blender Cycles): The model features realistic scale and precise material ID separating the rim lip, the central hub, and the textured spokes. It is fully ready for advanced PBR material setups, delivering stunning close-ups and realistic metallic, magnesium, or carbon-fiber behaviors.

• Real-Time Engines & Simulators (Unreal Engine, Unity, Assetto Corsa modding): Thanks to its clean, efficient polygonal structure, the asset can be easily integrated into real-time interactive racing simulators, virtual showrooms, and WebGL-based online bike configurators with a minimal performance footprint.

Digital & Visual Applications

Beyond standard rendering, this asset is optimized for versatile creative and manufacturing use cases:

• Motorsport Prototyping & Concept Design: Ideal for populating concept bike builds, custom garage renders, and futuristic racing environments to showcase advanced additive manufacturing in motorsport.

• Additive Manufacturing & 3D Printing: Optimized and verified for high-end 3D printing applications, allowing for functional scale-model prototyping.

Asset Technical Specifications

• Scale: The file is designed in 1:1 real-world scale (Metric System / Millimeters), matching standard track-bike rear wheel hub and tire-bead configurations (17-inch diameter).

• Topology: Clean, optimized polygonal geometry, manifold mesh, 100% ready for slicing software.

• Materials: Organized with clear Material IDs for effortless customization of finishes (e.g., raw carbon, matte technical resin, anodized aluminum, glossy forged composite). All the materials, maps, cameras, and lights are integrated into the KeyShot files (available).

• Parts: Monolithic single-body main structure with separate hub/mounting hardware elements.

Overall Dimensions

• Standard 17x 6.0 racing rear wheel specification (approx. 450x450x160.5 mm).

3D model available in these formats:*• FBX (Multi-Format Exchange)

• OBJ (Universal Wavefront)

• GLB / glTF (Optimized for Web, Mobile & AR configurators)

• STL (High-density, error-free mesh optimized for 3D printing)

• STEP / IGES (NURBS format for manufacturing and CAD cross-compatibility)

• PARASOLID (*.x_t interchange format for engineering software)

• KEYSHOT (package with materials, scene, studio lighting, and cameras)

Customization

*If you need specific dimensional adjustments (e.g., change hub offset, brake disc mounting patterns, or width adjustments for 180 to 200 section tires), or a tailored material palette for your racing project, feel free to contact me for custom requests!*

REVIEWS & COMMENTS

See what other buyers think about this model - real feedback on quality,
accuracy, and usability.
There are no reviews or comments yet. Please be the first one to write it.
NEW
Recently added to CGTrader - explore one of the latest models on the marketplace.

3D Printable Motorcycle Rear Star Rim 3D print model

Royalty Free License (no AI)
Hire
Like this model to show appreciation to the designer.
See how many times this model was viewed.
Share this model to support the designer and boost their visibility.
File formats
STL
Stereolithography<br />File Size: 2.91 MB
OBJ
OBJ | 2 files<br />File Size: 529 MB
3MF
3D Manufacturing File<br />File Size: 72.3 MB
IGE
IGES<br />File Size: 4.21 MB
SAT
3D ACIS<br />File Size: 3.06 MB
SLDPRT
SolidWorks<br />Version: 2017<br />File Size: 2.55 MB
WRL
VRML<br />File Size: 1.41 MB
X_T
Parasolid<br />File Size: 907 KB
FBX
Autodesk FBX<br />File Size: 71.5 MB
GLTF
glTF<br />File Size: 107 MB
USDZ
USDZ<br />File Size: 66.7 MB
BIP
KeyShot<br />File Size: 122 MB
Provided by designer
Information and details shared directly by the model's designer.
3D printing
Indicates whether the designer marked this model as suitable for 3D printing.
Model is prepared for 3D printing
The designer indicates this model is prepared for physical 3D printing and includes printable file formats.
Pre-supported or supports are not needed
Split into parts
Units
Publish date
Model ID
Chat