Indane Gas Cylinder 3D Model – Low Poly Game-Ready Asset, FBX
Other

Indane Gas Cylinder 3D Model – Low Poly Game-Ready Asset, FBX

$11.88

File Formats

Native Format

.blend
Cycles | 2013 | 8.1 • 3.97 MB

Exchange Formats

.obj.autodesk fbx.autodesk maya.gltf.fbm.stereolithography.textures

Features

File & scene

Binary FBX No unsupported objects

Geometry

No N-gons No faceted geometry Manifold geometry Polygon mesh

Textures & material

PBR textures No embed textures Square textures Power of 2 texture sizes Assigned materials

UVs & naming

No UV overlaps UV unwrapped model Allowed characters

3D Features

Low-poly PBR Textures Materials UV Mapping

Unwrapped UVs

Non-overlapping

Download information

After purchase, you will receive an email within several hours with a download link to access your files.

Description

Elevate your 3D projects with this Indane Gas Cylinder 3D Model, designed for optimal performance and realism. This low-poly, game-ready asset is perfect for applications in gaming, simulations, and architectural visualizations.

The Indane Gas Cylinder features a highly optimized mesh that ensures smooth rendering in real-time applications. Its clean topology and accurate dimensions provide a realistic representation while maintaining lightweight properties for efficient performance.

  • Formats: Binary FBX, OBJ, Blender (.blend)
  • Geometry: Manifold geometry, no N-gons or faceted geometry
  • PBR-Ready Textures: Square textures with power of 2 sizes, assigned materials
  • UV Mapping: Non-overlapping UVs, fully unwrapped
  • Polygon Count: Optimized for real-time rendering

This model is ideal for a variety of projects including industrial scenes, Indian environments, and architectural visualizations. Whether you’re working in Unity, Unreal Engine, or Blender, this model will seamlessly integrate into your creative workflow.

Download now and enhance your 3D asset library with this realistic Indane Gas Cylinder!

Tags

animationsarchitecturalcompatiblecylindergaminggashigh qualityhouseholdindustriallightweightlow polyoptimizedotherrealisticsimulationstexturestopology