DESCRIPTION

60 Hard Surface IMM Fitted Solids

I am presenting a structured collection of 60 hard surface IMM fitted solid elements, built for precision modeling, modular construction, and advanced hard surface workflows.

This collection focuses on fitted solid forms designed to interlock, align, and integrate seamlessly with other shapes. It includes variations such as fitted cubes, interlocking blocks, nested forms, aligned prisms, stepped solids, offset volumes, corner-fitted elements, edge-fitted segments, beveled solids, chamfered blocks, recessed forms, inset shapes, protruding elements, slot-based solids, mechanical bases, structural units, connector blocks, and modular solid components.

Each mesh is constructed with clean, organized low poly topology and controlled edge flow, allowing precise operations such as extrusion, beveling, bridging, creasing, splitting, and advanced polygon-level editing using ZModeler. The structure supports accurate alignment, deformation, scaling, and reconstruction while maintaining clean and predictable results.

These fitted solids are particularly useful for building complex assemblies where elements must connect or align precisely. They can be used in mechanical modeling, industrial design, architectural construction, environment assets, furniture structures, and modular systems requiring tight integration between parts.

This collection is specifically built to help 3D artists save time during production. Instead of repeatedly constructing fitted and interlocking forms from scratch, all essential elements are prepared and ready for immediate use. This significantly reduces repetitive work and can save hours, days, or even weeks in detailed modeling workflows.

You are strongly encouraged to modify the meshes and build new designs from them. These solids are intended as modular building blocks that can be reshaped, merged, duplicated, and transformed into entirely new structures, whether for mechanical assemblies, architectural elements, or custom hard surface designs.

The package includes multiple file formats for full pipeline compatibility:

  • IMM Brush (.ZBP)
  • ZTL (ZBrush Tool with all meshes organized)
  • OBJ (Files Separated and All Together)
  • STL (Files Separated and All Together)
  • FBX (All Together)
  • DAE (All Together)
  • Blender (All Together)

The files are structured to support both individual element selection and full collection workflows, ensuring flexibility across different software and production environments.

This collection provides a precise and efficient foundation for building interconnected hard surface forms, focused on accuracy, modularity, and complete creative control.

License Information:

  • This product is distributed under a Standard License.
  • The license grants usage rights to one individual user. It is intended for a single person to Download and use the files for personal or commercial creative projects.
  • The license allows you to use the meshes as building blocks to create new original works.
  • It does not allow redistribution of the base assets themselves.
  • The Brushes and 3D Assets are intentionally structured for transformation and creative reconstruction.

Master and visionary of 3D Design:

Yacine BRINIS, Sculptor of Digital Realms with Precision and Artistry.

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60 Hard Surface IMM Fitted Solids Low-poly 3D model

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File formats
STL
Stereolithography | 2 files<br />File Size: 2.72 MB
OBJ
OBJ | 2 files<br />File Size: 2.08 MB
ZTL
Zbrush | 2 files<br />File Size: 1.22 MB
BLEND
Blender<br />File Size: 1.67 MB
FBX
Autodesk FBX<br />File Size: 1.39 MB
OTHER
Other<br />File Size: 8.93 KB
DAE
Collada<br />File Size: 2.15 MB
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FBX
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Binary FBX
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No unsupported objects
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Geometry
No N-gons
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No faceted geometry
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Manifold geometry
Manifold geometry ensures all surfaces are properly connected, avoiding issues like edges shared by more than two faces.
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Textures & material
PBR textures
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Required PBR textures:
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- Roughness
- Metalness
- Normal
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No embed textures
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Square textures
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Power of 2 texture sizes
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Assigned materials
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UVs & naming
No UV overlaps
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UV unwrapped model
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