DESCRIPTION
  • Elevate your fitness experience with our meticulously crafted 3D model of a barbell featuring a robust handle, designed for both aesthetic appeal and functional excellence.
  • This industrial jack-inspired design not only captures the essence of strength training but also serves as a striking visual element for any gym or fitness studio.
  • The barbell's realistic proportions and intricate detailing make it an ideal choice for fitness enthusiasts, trainers, or anyone looking to enhance their workout environment.
  • Whether you're using it for digital projects, presentations, or as a unique decor piece, this model embodies the spirit of determination and power.
  • In addition to its stunning visual representation, this 3D barbell model is optimized for versatility and ease of use.
  • Compatible with various design software, it allows for seamless integration into your projects, whether you're creating promotional materials, virtual training sessions, or fitness apps.
  • The handle is ergonomically designed to reflect real-world usability, ensuring that your digital representation resonates with authenticity.
  • Invest in this exceptional 3D barbell model today and bring a touch of industrial strength to your creative endeavors, inspiring motivation and dedication in every viewer.
  • Number of Polygons:1676
  • Number of Vertices:1762
  • low poly
  • Textures Format: PNG
  • Texture Resolution:4K

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Industrial jack 3D model

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File formats
OBJ
OBJ<br />Version: 2023<br />File Size: 310 KB
PNG
PNG<br />Version: 2023<br />File Size: 31.3 MB
MA
Autodesk Maya | 4 files<br />Version: 2023 - Renderer: Arnold 2023<br />Version: 2023 - Renderer: Arnold 2023<br />File Size: 865 KB
FBX
Autodesk FBX | 3 files<br />Version: 2023<br />File Size: 524 KB
OTHER
Other<br />File Size: 2.35 MB
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3D Features
PBR
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Textures
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3D printing
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Model is not 3D printable
The designer indicates this model is intended for digital use only (rendering, animation, or AR/VR) and not for 3D printing.
Geometry
Polygon mesh
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1676 polygons
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/ 1762 vertices
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Unwrapped UVs
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