Tehnif CAD Studio

Tehnif CAD Studio is a Windows desktop application for geometric modeling and computer graphics, built as a space for learning, exploration, and experimentation. It empowers users to engage with core graphics concepts and prototype geometric ideas, turning abstract 3D thinking into tangible, hands-on experiences.

 

Tehnif CAD Studio is the official production release of the internal project code-named Figura 360.

  • Current Version: 26.10 Alpha

  • Availability: Not available yet

  • Distribution: Planned for Microsoft Store

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STL Dino Import Scene

Example scene featuring import of STL file. The STL (STereoLithography) file format is widely-adopted format for 3D printing and rapid prototyping and represents 3D models as a mesh of triangles.

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DXF Statue Import Scene

Example scene featuring import of DXF file. DXF (Drawing Exchange Format) is an open-source vector file format developed by Autodesk in 1982 to enable data interoperability between AutoCAD and other CAD programs.

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Cabin Compound Scene

Cabin compound scene example presented in a perspective view, featuring solid modeling and assembling, procedural fast calculation, navigation (Zoom, Pan, Orbit), perspective view.

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Staircase Compound Scene

Staircase compound scene example presented in a perspective view, featuring solid modeling and assembling, procedural fast calculation, navigation (Zoom, Pan, Orbit), perspective view.

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Clock Compound Scene

Clock compound scene example presented in a perspective view, featuring solid modeling and assembling, procedural fast calculation, navigation (Zoom, Pan, Orbit), perspective view.

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Drills Compound Scene

Drills compound scene example presented in a perspective view, featuring solid modeling and assembling, procedural fast calculation, navigation (Zoom, Pan, Orbit), perspective view.

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Room Compound Scene

Room compound scene example presented in a perspective view, featuring solid modeling and assembling, procedural fast calculation, navigation (Zoom, Pan, Orbit), perspective view.

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Primitive Features

Primitives scene example presented in a perspective view, featuring various primitives: lines, arcs, circles, splines, contours, equidistants, texts, dimensions.

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Surface Features

Surfaces scene example presented in a perspective view, featuring various surfaces: Mesh, Face, Coons From 3 Curves, Coons From 4 Curves, Linear Surface, Surface From Clips, Extrude Surface, Rotation Surface, Spiral Surface, Pipe Surface.

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Solid Features

Solids scene example presented in a perspective view, featuring various solids: Boxes, Spheres, Cylinders, Cones, Ellipsoids, Tors, Spheric Bands, Linear Body, Body From Clips, Extrude Body, Rotation Body, Spiral Body, Pipe Body.

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Boolean Features

Boolean operations scene example presented in a perspective view, featuring various boolean operations for solid modeling: Intersection, Union, Subtract, Intersection Contours, Sections.

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Surfaces and Solids

Advanced tools designed to turn 2D objects into detailed and precise 3D models. This improves the design’s depth, accuracy, and appearance, making the final result clearer and more refined.

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Kinematic Operations

Kinematic operations involve the process of generating new objects by extruding a two-dimensional shape along a defined path within three-dimensional space. This technique is fundamental in modeling, allowing the transformation of flat designs into complex 3D forms through guided movement.

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2D and 3D primitives

Solid modeling creates 3D objects by shaping form, surface, and volume. It starts with 2D shapes like lines and circles, which become 3D forms. Basic 3D shapes like cubes and spheres combine or change to build complex models, aiding design in engineering, architecture, and products.

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Boolean Operations

Boolean operations in solid modeling combine simple solids using union, intersection, and difference. They enable quick, accurate CAD modeling, aiding prototyping, analysis, and manufacturing, and enhance software flexibility for detailed shapes.

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Solid Modeling

Solid modeling is a CAD technique that creates precise 3D object shapes, defining volume and surface. It enables detailed design review, stress tests, movement analysis, and manufacturing planning, speeding up product design with fewer errors and improved collaboration.

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