# Design into 3D

## Design into 3D

- [Introduction](https://willadams.gitbook.io/design-into-3d/readme.md): A system for parametric design of projects for CNC or traditional techniques
- [1st Concepts](https://willadams.gitbook.io/design-into-3d/1st-concepts.md): Concepts and design and fabrication considerations
- [2D Drawing](https://willadams.gitbook.io/design-into-3d/2d-drawing.md): Drawing in 2 dimensions to make 3 dimensional parts
- [3D Project](https://willadams.gitbook.io/design-into-3d/3d-project.md): Joining two or more pieces to create three dimensional parts.
- [Prototypes and Designs](https://willadams.gitbook.io/design-into-3d/prototypes-and-designs.md): Working efficiently to save time and effort
- [Toolpaths](https://willadams.gitbook.io/design-into-3d/toolpaths.md): Toolpath options in Carbide Create
- [Mitered Box](https://willadams.gitbook.io/design-into-3d/mitered-box.md): Modern adhesives allow for a box to be cut using just miters and glued and folded.
- [Box (Finger) Joints](https://willadams.gitbook.io/design-into-3d/fingerjoints.md): Cutting box (finger) joints vertically in boards at the front of the machine
- [Radiused Box joints](https://willadams.gitbook.io/design-into-3d/radiused-fingerjoints.md): Cutting box joints on boards flat on the machine
- [Blind Miter & Hidden Spline](https://willadams.gitbook.io/design-into-3d/blind-miter-and-hidden-spline.md): Ninety degree joints with 90 degree V bits and minimal voids
- [Mortise and Tenon Joinery](https://willadams.gitbook.io/design-into-3d/mortise-and-tenon-joinery.md): Cutting mortises and fitting tenons with minimal voids
- [Butt Joints and Measuring](https://willadams.gitbook.io/design-into-3d/butt-joints-and-measuring.md): Simple butt joints save material but can be made to work with modern adhesives and hardware.
- [Box with Fitted Lid](https://willadams.gitbook.io/design-into-3d/pencil-box-with-fitted-lid.md): A simple box with fitted lid and optionally divided compartments
- [Quarter Blind Miter Box Joints](https://willadams.gitbook.io/design-into-3d/quarter-blind-miter-box-joints.md): Miter joints with hidden joinery cut flat on the machine
- [Full Blind Miter Box Joints](https://willadams.gitbook.io/design-into-3d/full-blind-miter-box-joints.md): One joint, two levels, three tools
- [Adjustable Modular Designs](https://willadams.gitbook.io/design-into-3d/adjustable-modular-designs.md): Design made up of discrete parts allows customization without programming.
- [Further Toolpath Details](https://willadams.gitbook.io/design-into-3d/further-toolpath-details.md): Cutting a part out using 3D modeling.
- [Drawer Organizers](https://willadams.gitbook.io/design-into-3d/drawer-organizers.md): Flexible organization setup
- [A Final Project](https://willadams.gitbook.io/design-into-3d/a-final-project.md): A project which uses multiple materials and techniques
- [3D Modeling from 2D Geometry](https://willadams.gitbook.io/design-into-3d/3d-modeling-from-2d-geometry.md): 3D Modeling using Carbide Create Pro
- [3D Modeling](https://willadams.gitbook.io/design-into-3d/3d-modeling.md): 3D Modeling using tools such as Alibre Atom 3D, Blender, and Plasticity
- [Machine Motion](https://willadams.gitbook.io/design-into-3d/machine-motion.md): Software to move a machine around
- [Machine Operation](https://willadams.gitbook.io/design-into-3d/machine-operation.md): Putting everything together to make parts and projects
- [Programming](https://willadams.gitbook.io/design-into-3d/programming.md): The underlying mechanism behind the designs
- [Resources](https://willadams.gitbook.io/design-into-3d/resources.md): Additional sites and concepts
