
Who am I
What will you learn in this course
Model a 3D bottle in Rhino by referencing a background photo, setting millimeter units, scaling to 70 mm, tracing profiles, filleting and offsetting, then revolving to create the bottle surface.
Create 2D drawings from 3D Rhino models with the Make2D command, producing sections, elevations, top, perspective, and isometric views using third angle projection, including layer management and scene silhouettes.
Adjust line types and line weights in Rhino layouts by setting print colors to black and using a dedicated axis 2d layer; preview ensures 1:1 printing.
Learn to create and customize dimensions in Rhino 8 using annotation styles, including setting up a dedicated dimensions layer, adjusting model and layout space scaling, text, fonts, and arrow styles.
Apply dimensioning rules in Rhino by setting a dimension style, dimensioning main distances from inner to outer, and using radial dimensions for arcs, with help lines.
Learn to build a section drawing in Rhino 3D layouts by converting hidden lines to silhouette, creating a cutting line, applying hedge fills, and finalizing with trims and dimensions.
Divide a bottle model in Rhino 3D into segments and move them apart to create exploded view drawings. Close surfaces with planar surface, trim, and show assembly in isometric 2D.
In this course you will learn how to extract technical drawings from 3D models in Rhinoceros 3D. Technical drawings are essential for communicating ideas in industry, design and engineering. You will learn here how to adjust scale, dimensions, descriptions, lineweights and linetypes - all of it to present 3D models in an understandable way. I have been working with Rhinoceros 3D for over 18 years, using it as the main tool for design and fabrication in various fields and scales, and I aim to show you fast and easy ways to learn its functionality.
Content of the course:
Firstly, we will create a 3D model of a bottle. Then you will get to know how to use Layouts in Rhino and extract different 2D drawings: plans, sections, elevations and perspective views. Secondly, we will subdivide the 3D model into smaller parts and extract from it cutaway sections and exploded-view drawings. These drawings are very useful to explain more complex three-dimensional objects, thus used a lot in architecture and design fields.
Whether you're an architect, designer, engineer or a hobbyist, you will learn here very useful skills of generating 2D drawings to clearly communicate your ideas.
My tutorials are done with v5 version, but you can follow them without problems if you use higher versions such as v6 or v7.
Thanks for your attention!