DESCRIPTION
A High Quality photo Real for a Soda pepsi Fridges that is created to help you add the realism to your project.The model is suitable for any visual production - broadcast, high-res film closeups, advertising, games, design visualization, forensic presentation, etc.

Features:

-Pbr Textures-All cans and Bottles shown in the presentation images are used inside the fridge (all are pro certified)-No errors or missing files-no Overlapping vertex nor faces-The light Rig is included just press render to get the same result

  • High quality polygonal model, correctly scaled for an accurate representation of the original object.
  • Model is fully textured with all materials applied.
  • 3ds Max models are grouped for easy selection, and objects are logically named for ease of scene management.
  • No part-name confusion when importing several models into a scene.
  • No cleaning up necessary just drop your models into the scene and start rendering.preview images.
- Units: Mm

Textures
All 2048 x 2048 pixels (PBR textures)all textures and material included

FORMAT:

-3DSMAX2018 V-RAY-3DSMAX2015 V-RAY-FBX-OBJerything, lighting ,camera ,HDRI image just download and render it.. if OBJ ND FBX FORMAT are not supoported in your engine y-preivew image is render bty VRAY , max file including evou can coback freely. ntact me

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Pepsi fridge 3D model 3D model

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File formats
OBJ
OBJ<br />File Size: 5.09 MB
FBX
Autodesk FBX<br />File Size: 10.3 MB
MAX
Autodesk 3ds Max | 2 files<br />File Size: 10 MB
Provided by designer
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3D Features
Animated
The model includes animations (movement or actions) that can be played in supported software or engines.
Rigged
The model has a skeleton or bone structure, making it ready for posing or animation.
Low-poly
PBR
Uses Physically Based Rendering materials, which give the model realistic lighting and surface properties.
Textures
The model includes image files (textures) that add color, patterns, or detail to its surfaces.
Materials
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UV Mapping
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Model is not 3D printable
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Geometry
Polygon mesh
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2973 polygons
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/ 5541 vertices
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Unwrapped UVs
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