AUTODESK FUSION 360 • GETTING STARTED AND DATA MANAGEMENT

Named Views & Section Analysis — Create named views and use section analysis to inspect geometry (intro)

Master reusable camera positions and cross-sectional cuts to reveal the hidden interior of your 3D models.

Historical Context & Motivation

Long before digital modeling existed, architects and industrial designers relied on carefully drafted orthographic projections — front, top, and side views drawn by hand on vellum — to communicate the full geometry of a three-dimensional object. Each view served as a named reference that an engineer or fabricator could return to repeatedly, much like bookmarking specific pages of a visual essay. Section views emerged alongside this tradition: a designer would conceptually 'slice' through a building or mechanism, hatch the cut material, and reveal internal structure that no exterior view could capture. These twin conventions — named viewpoints and cross-sectional cuts — became the backbone of technical communication in every design discipline.

1795
Monge's Descriptive Geometry
Gaspard Monge formalises orthographic projection, establishing standard named views (plan, elevation, profile) as the universal language of engineering drawing.
1963
Sketchpad & Interactive Views
Ivan Sutherland's Sketchpad introduces real-time on-screen transformations, allowing designers to rotate and store specific viewpoints of a digital model for the first time.
1988
Parametric CAD Arrives
Pro/ENGINEER popularises feature-based parametric modeling. Named views and section analysis become embedded tools that update automatically with design changes.
2013
Fusion 360 Launch
Autodesk releases Fusion 360 as a cloud-connected CAD/CAM/CAE platform, integrating named views and a dedicated Section Analysis tool accessible to artists, designers, and engineers alike.

The fundamental question these tools answer has not changed in two centuries: How do I reliably revisit a specific orientation of my model, and how do I see what is happening inside it? Fusion 360 inherits that legacy and wraps it in a modern, cloud-aware interface that Visual Arts students can leverage for sculpture prototyping, product visualization, and digital fabrication alike.

Core Principles & Definitions

Before exploring the interface, it is important to anchor two core concepts. A named view is a saved camera state — position, orientation, zoom level, and projection type — that you can recall instantly. Think of it the way a photographer pins a camera on a tripod at a particular angle and focal length; switching to a named view transports your virtual camera back to that exact setup. Section analysis is a non-destructive inspection tool that slices your model with one or more cutting planes, temporarily hiding material on one side so you can examine wall thicknesses, internal cavities, or the alignment of hidden features. Crucially, section analysis never alters the underlying geometry; it is purely a visualization aid.

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Named View

A bookmarked camera state (position, orientation, zoom, projection) that can be recalled or shared. Fusion 360 ships with default named views — Front, Back, Top, Bottom, Left, Right, Home — and lets you create unlimited custom ones.
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Section Analysis

A non-destructive visualization mode that uses one or more cutting planes to expose cross-sections of your solid or surface body. Hatching and colour fills indicate cut material.
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Cutting Plane

An infinite flat surface that defines where the model is sliced. You can choose an origin plane (XY, XZ, YZ), a construction plane, or a planar face of your geometry as the cutting plane.
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ViewCube

The small 3D orientation widget in the top-right corner of the Fusion 360 canvas. Clicking a face, edge, or corner instantly orients the camera to the corresponding standard view.
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Projection Type

Fusion 360 supports both perspective (realistic depth) and orthographic (parallel lines stay parallel) projections. Named views can store either mode, letting you toggle between artistic and technical representations.
KEY TAKEAWAY
Imagine you are staging a photography shoot of a ceramic sculpture. Named views are your carefully positioned tripods — you can return to each shot angle without re-measuring. Section analysis is like slicing the sculpture with a wire and lifting off the cap to photograph the hollow interior. Neither action damages the original piece, and both make your documentation far richer than a single snapshot ever could.

Visual Explanation — Named Views in the Interface

The diagram shows a Fusion 360 canvas with the ViewCube (top-left) linked to the six standard faces plus the Home isometric view. On the right, the Custom Named Views panel lists user-created bookmarks. The central 3D box illustrates how Front, Right, and Top correspond to distinct planar orientations.

When you open Fusion 360, the ViewCube sits in the upper-right corner of the canvas and acts as a quick-access compass for standard orthographic orientations. Clicking any face — Front, Top, Right, and so on — snaps the camera to that exact plane-parallel orientation. Clicking an edge or corner delivers an axonometric blend. While these six default views plus the Home isometric are immensely useful, they cannot capture every vantage point you might need for documentation, rendering, or peer critique. That is where custom named views come in: navigate to any orientation, adjust zoom and projection type, then save it with a descriptive name via the View ▸ Named Views ▸ New Named View menu.

How Section Analysis Works

The Section Analysis tool lives under the Inspect menu in the Design workspace. When activated, it prompts you to select a cutting plane — any origin plane, construction plane, or planar face — and then it immediately renders the cross-section. Internally, Fusion 360 computes the Boolean intersection of the infinite plane with every solid and surface body in the design, temporarily suppressing all material on the positive side of the plane's normal vector. The exposed interior surfaces receive diagonal hatching by default, making it visually obvious which regions are solid material. You can drag the plane along its normal axis to sweep through the model, offering an animated, CT-scan-like experience of your geometry.

Key Parameters of a Cutting Plane

PLANE EQUATION
ax + by + cz + d = 0
Where a, b, c define the plane's normal direction and d is the signed offset from the origin. In Fusion 360 you do not type this equation — you simply pick a reference plane and drag — but understanding the underlying math clarifies why the section flips when you reverse the normal.
OFFSET DISTANCE
d_offset = n̂ · (P − P₀)
Where is the unit normal of the cutting plane, P is the dragged position, and P₀ is the original plane origin. Fusion 360 displays this scalar distance in millimeters (or your chosen unit) as you drag the section plane's manipulator handle.
💡 Pro Tip
You can add multiple section analyses simultaneously — for example, one along the XZ plane and another along the YZ plane — to create a quarter-section cutaway that reveals internal geometry from two directions at once. Toggle each one on or off in the Browser panel under the Analysis folder.

Step-by-Step Workflow & Classification of View Types

A vase model (left) is sliced by a cutting plane along YZ. The resulting half-section (right) reveals hatched cut material, the internal wall thickness, and the preserved outer profile.

Classification of View & Analysis Types

Comparison of view and analysis types available in Fusion 360
TypeAccess PathPurpose
Standard View (ViewCube)Click ViewCube face/edge/cornerQuick orthographic or isometric orientation for modeling.
Custom Named ViewView ▸ Named Views ▸ New Named ViewSaves camera position, zoom, and projection for recall; ideal for rendering and presentation.
Section Analysis (Single)Inspect ▸ Section AnalysisSlices with one plane; good for checking wall thickness or cavity alignment.
Section Analysis (Multi)Inspect ▸ Section Analysis (add additional)Multiple intersecting planes reveal quarter or eighth sections for complex interiors.

The workflow for creating a custom named view is straightforward. First, navigate to the desired orientation using orbit, pan, and zoom — or click the ViewCube for a starting position. Second, fine-tune the projection type by pressing P to toggle between perspective and orthographic modes. Third, open View ▸ Named Views ▸ New Named View, type a descriptive name (e.g., 'Portfolio – Three-Quarter Hero'), and click OK. The view now appears in the Browser's Named Views folder and can be recalled with a single click. For section analysis, the process is similarly lean: Inspect ▸ Section Analysis, select a plane or face, and drag the manipulator arrow to sweep through the model.

Worked Example — Inspecting a Hollow Ceramic Bowl

Imagine you have modeled a hollow ceramic bowl in Fusion 360 using the Revolve tool. You need to verify that the wall thickness is a consistent 4 mm before sending the file to a 3D printer. You also want to save a portfolio-quality three-quarter view for your design presentation. Follow the steps below.

Creating a Named View & Running Section Analysis on a Ceramic Bowl
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Step 1 — Set Up the Camera AngleClick the Home icon on the ViewCube to reset to the isometric view. Then use Shift + Middle Mouse Button to orbit slightly below the horizontal so you can see both the exterior curvature and the interior lip of the bowl. Scroll to zoom in until the bowl fills roughly 70 % of the canvas.
Camera positioned at a flattering three-quarter angle.
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Step 2 — Toggle to Perspective ProjectionPress P on your keyboard to switch to perspective projection. This introduces subtle depth convergence that makes your render feel more natural — a critical consideration for any portfolio image.
Projection set to Perspective.
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Step 3 — Save the Named ViewNavigate to View ▸ Named Views ▸ New Named View. In the dialog box, enter the name Portfolio – Bowl Hero and click OK. The new entry appears in the Browser under Named Views.
Named view 'Portfolio – Bowl Hero' created and accessible from the Browser.
4
Step 4 — Launch Section AnalysisGo to Inspect ▸ Section Analysis. When prompted, click the XZ origin plane (visible in the Browser under Origin). Fusion 360 immediately cuts the bowl in half, revealing the inner cavity and the wall profile. Hatching appears on the exposed cut faces.
Cross-section visible; hatched regions indicate solid material.
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Step 5 — Measure Wall ThicknessWhile the section is active, use Inspect ▸ Measure and click the inner and outer edges of the exposed wall profile. The measurement dialog reports a wall thickness of 4.00 mm — confirming the design meets the target. If discrepancies appeared, you could edit the Revolve sketch directly and the section analysis would update in real time.
Wall thickness verified at 4.00 mm — design is print-ready.

Strengths, Limitations & Comparisons

Strengths and limitations of view and inspection tools in Fusion 360
AspectStrengthsLimitations
Named ViewsInstant recall of complex camera setups; stores projection type and zoom; shareable via Fusion 360 link.Does not store visual style (e.g., shaded vs. wireframe) or appearance overrides; limited to camera state only.
Section AnalysisNon-destructive; real-time update with design changes; supports multiple simultaneous planes; hatching indicates solid vs. hollow.Cannot create new geometry from the cross-section outline (use Sketch ▸ Project/Include for that); can slow performance on very complex assemblies.
ViewCubeAlways visible; intuitive spatial mapping; supports right-click context menu for setting Front face.Limited to standard six faces and their diagonals; no custom save capability.
KEY TAKEAWAY
Section analysis is like the MRI of your 3D model: it lets you peer inside without making a single surgical cut. Just as a radiologist relies on standardised imaging planes (sagittal, coronal, transverse) to compare scans, your named views and cutting planes create a consistent, repeatable inspection protocol. When you combine both tools — a saved camera angle paired with a persistent section cut — you establish a diagnostic station you can revisit at any stage of the design process.

Connection to Advanced Techniques

Named views and section analysis serve as entry points to a richer ecosystem of inspection and documentation tools in Fusion 360. As you advance, you will encounter features that build directly on the foundations covered here, extending them into manufacturing, simulation, and collaborative review workflows.

From introductory view and inspection tools to advanced Fusion 360 capabilities
Introductory ToolAdvanced ExtensionWhen You'll Need It
Custom Named ViewDrawing Views (2D Drawing)When you generate technical drawings from your model, each view on the sheet references a camera orientation — the same concept, now linked to dimensioned documentation.
Single Section AnalysisSection View in DrawingsIn the Drawing workspace, you place formal section views with cutting-line notation (A–A) that follow ASME or ISO standards for manufacturing prints.
Section Analysis (visual)Interference / Clearance AnalysisWhen assemblies grow complex, you graduate from visual cross-sections to computed interference checks that flag collisions automatically.
ViewCube orientationStoryboard / AnimationThe Animation workspace lets you keyframe camera positions over time, essentially creating a sequence of named views that play as a video for client presentations.

For Visual Arts students, the most immediate next step is the Render workspace, where your saved named views become camera angles for photorealistic renders complete with materials, lighting environments, and depth-of-field effects. Knowing how to set up and recall precise camera states before entering the Render workspace saves significant time and ensures consistency across a portfolio series.

Practice Problems

PROBLEM 1CONCEPTUAL
Explain the difference between a standard view accessed via the ViewCube and a custom named view created by the user. Under what circumstances would you prefer one over the other?
PROBLEM 2BASIC CALCULATION
You are running a section analysis on a cylindrical vessel with an outer diameter of 80 mm and an inner diameter of 70 mm. What is the wall thickness revealed by the cross-section? Express your answer in millimeters.
PROBLEM 3INTERMEDIATE
You have placed a section analysis using the XZ origin plane on a model of a lamp shade. The section looks correct on the left half, but the right half of the model is hidden instead of the left half, which is what you intended. Describe why this happened and how you would fix it in Fusion 360.
PROBLEM 4APPLIED
You are designing a slip-cast porcelain mug in Fusion 360 for your ceramics studio. The mug has a handle that attaches to the body at two points. Describe a workflow that uses both named views and section analysis to verify that the handle's internal attachment geometry will not create weak spots thinner than 3 mm during casting.
PROBLEM 5CRITICAL THINKING
Section analysis in Fusion 360 is purely visual — it does not generate new sketch geometry from the cross-section outline. Discuss the implications of this limitation for a Visual Arts student who wants to use a cross-sectional profile as the basis for a new design feature (e.g., a decorative inlay that matches the interior profile). What alternative Fusion 360 tools or workflows might bridge this gap?

Lesson Summary

This lesson introduced two complementary inspection techniques in Autodesk Fusion 360. Named views save a camera's position, orientation, zoom, and projection type so you can instantly recall any vantage point — from standard orthographic faces accessed through the ViewCube to custom three-quarter hero shots stored for portfolio renders. Creating a named view is as simple as navigating to the desired angle and choosing View ▸ Named Views ▸ New Named View.

Section analysis uses one or more cutting planes to slice through your geometry non-destructively, revealing internal cavities, wall thicknesses, and hidden features with hatched cross-section fills. Both tools are accessed from the Design workspace — named views via the View menu and section analysis via Inspect ▸ Section Analysis. Together, they form a repeatable inspection protocol that scales from simple single-body models to complex assemblies, and they connect forward to advanced workflows including 2D drawings, interference analysis, animation, and photorealistic rendering.

Varsity Tutors • Autodesk Fusion 360 • Named Views & Section Analysis