
Discover the initial Fusion 360 interface, from the application bar and data panel to the ribbon, browser bar, and navigation controls, for efficient model creation.
Create a sketch, extrude it by 20 units, and generate an ISO A3 drawing with orthographic and isometric views in Fusion 360.
Adjust settings and create a complex sketch in Fusion 360, then extrude by 20 units to form a model and generate isometric and orthographic drawings to ISO standards.
Create a sketch, set millimeter units and grid, apply lines and fillets, revolve the sketch into a 3D model, save the file, and generate orthographic and isometric drawing views.
Create a sketch, extrude to 20 units, and generate isometric, orthographic, and asymmetric views for a Fusion 360 model.
Create a Fusion 360 sketch by drawing the outer and inner loops with the line tool, then apply equal constraints and dimension with the sketch dimension tool in millimeters.
Create and dimension sketches for revolved designs in Fusion 360 by setting up the sketch plane, drawing a center line, applying constraints, and adding diameter and linear dimensions, then save.
Sketch and dimension a closed loop in Fusion 360, applying tangent, equal, and coincident constraints to lines, arcs, and circles, then save the sketch.
Create a precise Fusion 360 sketch by drawing the outer loop, adding a center line, applying constraints, and dimensioning lines, arcs, and a circle, then save in millimeters.
Learn to model in Fusion 360 by sketching a three-circle, four-tangent-line profile, performing a ten millimetres extrusion, assigning steel material, and analyzing mass properties.
Model a base feature in Fusion 360 by sketching on xy plane, applying equal constraints and dimensions, revolving the sketch around the center line 180 degrees, and assigning steel material.
Learn to create a base feature, extrude multiple features, mirror the second feature, add a cut feature, and apply a chamfer in Fusion 360 using sketches, constraints, and precise dimensions.
Design a train wheel in Fusion 360 by revolving a sketch to form the base, adding a cut feature, applying a circular pattern of six, and extruding the crank pin.
Learn to create a multi-feature fusion 360 model using extrusions, sketches, constraints, a cut, offset planes, midplanes, and symmetric operations.
Create a Fusion 360 model by sketching on yz plane, extruding the base, then adding a second feature on a 135-degree reference plane with constraints, dimensions, and cuts, and saving.
Create multi-plane features in fusion 360 using base extrudes, ribs, mirrors, and cuts, then apply fillets and patterning techniques to finalize a saved model.
Design a candle stand in Fusion 360 using revolve and sweep features, plane along path, and section analysis, with detailed sketching, constraints, and isometric visualization.
Learn to model a complex part in Fusion 360 by creating a revolve base, lofting between elliptical sections along a path, then patterning the loft feature in a circular pattern.
Create a t-spline model in Fusion 360 by forming a box in sculpt workspace, applying mirror symmetry, inserting edges, finishing the form, and saving the design to a project.
Create components for a bench vise in Fusion 360, assemble it using a bottom-up design approach, apply joints and contact sets, analyze interference, and save the final model.
Create a reciprocating mechanism using a top down assembly, converting sketches into parts, extruding the base plate, pin, crank, and piston tank, and applying slider and revolute joints.
Create detailed drawings in Fusion 360 by generating front, top, and right-aligned projected and section views, a detail view, and an isometric view on ISO A4 landscape sheet.
Generate a complete Fusion 360 drawing for the bench vise assembly, including top, section, front, and isometric views, with balloons, a bill of materials, and a projected part list.
open, save, and refine a Fusion 360 drawing by adding center lines and marks, applying diameter, angular, and radius dimensions, and using datum identifiers with a concentricity tolerance.
Animate the bench vice assembly in Fusion 360 using a linear explode, then publish the current storyboard as a video saved to the cloud.
Design and model a sheet metal holder clip in Fusion 360, set 1 mm thickness, create base wall, contour flanges, cuts, holes, fillets and chamfers, and save as CE 09201.
Create a sheet metal component in Fusion 360 by defining a base flange, adding flanges and side walls, unfolding the design, and drilling holes per given dimensions.
This course offers an in-depth exploration of Autodesk Fusion 360, guiding you through every aspect of 3D modeling and design. Whether you’re an Engineer, Product Designer, Diploma Holder, Undergraduate, or a School Student, this tutorial series is designed to take you from beginner to advanced levels with no prior experience required.
Through comprehensive, step-by-step video lessons, you will:
Master sketching techniques to create accurate 2D profiles.
Learn part modeling to develop intricate 3D components.
Explore assembly design to construct multi-part systems with precision.
Gain expertise in sheet metal workflows for fabricating sheet metal parts.
Develop professional-level skills in technical drafting, creating industry-standard 2D drawings.
Additionally, the course delves into advanced concepts such as parametric design, top-down assembly modeling, and design optimization, equipping you with the knowledge to handle real-world challenges in design and manufacturing.
By the end of this course, you will have the expertise to confidently use Fusion 360’s powerful tools to bring innovative and complex designs to life, ready to meet the demands of modern engineering and product development.
The course also delves into advanced design concepts, equipping you with the skills to create complex and innovative designs using Fusion 360's versatile tools.
By the end of this course, you’ll have the confidence and skills to create professional, innovative, and complex designs using Fusion 360.
The course also explores advanced design concepts, empowering learners to create complex and innovative designs using Fusion 360’s powerful tools.