
Master the extrude feature in fusion 360 by creating a sketch, selecting a profile and planes, and adjusting height, direction, and symmetry to build solid geometry.
Learn to modify extruded features in Fusion 360, edit sketches, create circles and rectangles, apply join and cut operations, adjust height and orientation, and build complex 3D shapes.
Explore the intersection boolean operation in Fusion 360, converting sketches into solids via extrude, join and cut behaviors, offsets, and creating new bodies for assemblies.
Master the revolve feature in Fusion 360 by creating sketches on a chosen plane, selecting an axis, and shaping with circles, lines, trims, and holes before extruding.
Learn to use the revolve feature in Fusion 360 by building sketches with a two-point rectangle, defining angles and symmetry, and combining bodies through intersection and join operations.
Learn how to create a sweep in Fusion 360 by building a path and profile from sketches, adjusting distance percentage, and working with a single part and isometric orientation.
Master the sweep feature in Fusion 360 by twisting a profile along a path using the twist angle option, from 180 to beyond 360 degrees.
Learn the sweep feature in Fusion 360 by creating a profile sketch, such as a circle or text, and guiding it along a path with perpendicular or parallel options.
Master the sweep feature in Fusion 360 by selecting a profile and a path, using a guided sweep perpendicular to the path to shape parts such as a door handle.
Master the Fusion 360 loft feature by creating multiple planes and sketches on each, connecting diverse profiles at different heights to form a continuous loft, with section analysis.
Learn to build lofts in Fusion 360 by sketching a circle and polygon as profiles, defining a path, and lofting between profiles using direction or connect options.
fusion 360 loft feature lecture demonstrates using a centerline as the path, building multiple section sketches, applying tangents and constraints, and finishing with a hooked loft shape.
Learn to model a rib feature in Fusion 360 by sketching a profile, applying shell for external thickness, using symmetry and depth options, and adding supports for structural integrity.
Learn to design a plastic housing in Fusion 360 using sketching, slot creation, and extrude operations, then apply shell, set thickness, and perform depth-controlled cuts with symmetry.
Explore how to create a hole feature in Fusion 360, including placement on a face, using a single hole, reference dimensions, diameter and depth adjustments, and angle tuning.
Use the hole feature in Fusion 360 with placement to place holes from sketch points. Adjust depth, diameter, and angle, and flip orientation up to a plane or drill point.
Learn to create a box in Fusion 360 and apply hole features, including single holes, counterbore, and countersink, with precise dimensions, references, and standard clearances.
Learn to create a thread feature in Fusion 360 by sketching, extruding, and applying a cosmetic thread with configurable diameter and length.
Explore the box feature in Fusion 360 to create boxes by setting length, width, and height, and apply join, intersect, and new body operations to build shapes.
Learn to create a cylinder and a sphere in Fusion 360, adjusting diameter and height, and use joints to connect bodies and form assemblies.
Create and adjust a torus feature in Fusion 360 by drawing a circle on a plane, then modify the inner diameter and position (inside, center, outside) and apply the feature.
Explore the coil feature in Fusion 360, mastering revolution, height, and pitch to create spirals. Learn to control diameter, profile selection, and clockwise or anticlockwise rotation.
Master the Fusion 360 pipe feature: sketch a path on a plane, choose circular, square, or triangular sections, set diameter and thickness, and toggle hollow with join or intersect options.
Fusion 360 pipefitter techniques show how to create pipes with multiple parts, adjust path and diameter, and inspect sections to confirm intersections and hollow shells.
Learn to apply the rectangular pattern feature in Fusion 360 by duplicating a cylinder along a selected edge, adjusting distance, quantity, and symmetry to create evenly spaced instances.
Learn to use the rectangular pattern feature in Fusion 360 to create multiple copies along a 45-degree direction, suppress unwanted items, and adjust distance and quantity.
Fusion 360's circular pattern feature: set pattern type, axis, quantity, full or symmetric angle, suppress or unsuppress copies, and apply to hole and slot features.
Learn how to use the Fusion 360 path pattern feature to create a part pattern with quantity, distance, and spacing, including one-direction or symmetric options.
Learn to use the mirror feature in Fusion 360, building sketches, extruding bodies, and selecting faces, planes, and components to create mirrored geometry for assembly modeling.
Learn to use the thicken feature in Fusion 360 to create solid bodies from sketches by selecting faces, applying thickness (positive or negative), and using symmetry options.
Learn how to use the boundary fill feature in Fusion 360 to create volumes by selecting surfaces, planes, and boundaries.
Explore how to use the boundary fill feature in Fusion 360 to select planes, create sketches, and slice or cut bodies to assemble parts.
What is 3D Modelling?
3D modeling is the process of using software to create a mathematical representation of a 3-dimensional object or shape. The created object is called a 3D model and these 3-dimensional models are used in a variety of industries. The film, television, video games, architecture, construction, product development, science, and medical industries all use 3D models to visualize, simulate, and Rendering.
3D CAD Software
three-dimensional computer-aided design is a technology for design and technical documentation, which replaces manual drafting with an automated process. Used by architects, engineers, and other professionals, 3D CAD software precisely represents and visualizes objects using a collection of points in three dimensions on the computer. Autodesk has a broad portfolio of 3D CAD software programs to help people explore and share ideas, visualize concepts, and simulate how designs will perform before they are made.
Fusion 360
Fusion 360 unifies design, engineering, electronics, and manufacturing into a single software platform.
Choosing the right 3D modeling software for your project can be really difficult. Today we are going to help you with this! Fusion 360 really complete and powerful 3D modeling program, which could help you with your daily work, from visualization and simulation to prototyping and production. These CAD programs used for 3D modeling and considered leaders on the market.
Why Fusion 360?
Push the limit with 3D modeling
Solve engineering challenges faster
Avoid overpriced simulation tools
Focus on innovation, not CAD constraints
Cut your 3D modeling time in half
Realize your design instantaneously