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Alderson

ALDERSON BEAMS

The World's Fastest Beam Calculator.

Check, size, and report steel beams across AISC 360 and CSA S16, with the full calculation behind every result.

Everything you need to check the beam

Beam modelling

Beam arrangements

Model single-span, continuous, cantilever, and overhanging beams with multiple, editable supports.

Beams three-dimensional beam model with multiple supports and openings

Support geometry

Enter actual support positions and bearing lengths so reactions and bearing checks reflect the real condition.

Plain-language station input

Place loads and objects with expressions like L/2 or 6 feet from right instead of raw coordinates.

Section libraries

Choose CISC, AISC, or office built-up sections and custom materials, with their source recorded.

Stability and bracing

Segmented bracing

Divide the beam into the actual stability segments used by the design check, not one global length.

Close product view of two beam segments meeting at a restrained location

Directional flange restraint

Declare top and bottom flange restraint independently for uplift, moment reversal, and changing compression zones.

Automatic moment-gradient factors

Calculate Cb for every unbraced segment and retain the basis with the result.

Governing bracing result

See the controlling segment, location, and load case together.

Loads and combinations

Load types

Enter distributed, point, moment, and area loads, including tapered and joist-reaction loads.

Beams model with distributed and point loads

Load categories

Keep dead, live, snow, wind, and seismic loads distinct through calculation and reporting.

Construction-stage loading

Apply loads before or after composite action, with sustained percentages for long-term response.

Code combinations

Generate ASCE 7-22 or NBC 2020 combinations, or define your own, with a full derivation record.

Linked-beam workflow

Linked reactions

Use a finalized support reaction in another beam without re-entering the value or losing its calculation lineage.

Beams linked-reaction workflow connecting source and receiving beams

Stale-result detection

Know immediately when an upstream beam has changed and a linked reaction needs recalculating.

Dependency protection

Circular dependencies are blocked, and beams supplying active reactions cannot be archived unsafely.

Structural analysis

Full response set

Calculate reactions, shear, moment, and deflection in one pass.

Beams analysis results with governing demand, capacity, and diagnostic ratios

Signed envelopes

Inspect positive and negative envelopes with the governing combination and exact location.

Staged stiffness

Represent changing stiffness across construction stages instead of only the final condition.

Model diagnostics

Get an explicit failure when a model is unstable or outside supported scope.

Canadian steel design

CSA S16:19 checks

Check flexure, lateral-torsional buckling, shear, and shear-moment interaction on the installed Canadian design path.

Passing CSA S16:19 beam calculation with the governing Clause 13.5 check visible in Beams

Bearing and stiffener checks

Check web and bearing limit states, with automatic stiffener recovery where supported.

Section optimization

Search CISC sections using the same checker that verifies your final design.

Section provenance

See the CISC dataset identity behind every property used in the calculation.

AISC steel design

Flexural classification

Check yielding, lateral-torsional buckling, and flange or web local buckling, including supported noncompact and slender-web cases.

AISC beam check results with the governing design ratio visible

Shear-moment interaction

Check web shear and combined shear-moment response together.

Concentrated-force checks

Check web local yielding and web crippling where they apply.

Serviceability with uplift

Check deflection alongside wind uplift and moment reversal in one pass.

Composite beams

Composite design paths

Use CSA, AISC LRFD, or AISC ASD composite design matched to your project standard.

Composite steel beam and concrete slab model inside Beams

Deck and slab modelling

Model solid slabs, supported deck profiles, and asymmetric spacing or slab edges.

Stud layout

Set stud count and spacing yourself, or let Beams optimize for the credited composite action.

Full construction timeline

Check shored or unshored construction, camber, creep, and shrinkage in one workflow.

Web openings

Opening shapes

Place circular, rectangular, square, and obround openings individually or in a series.

Side-on Beams product view of a steel beam with a circular web opening

Canadian opening checks

Apply installed S16 small-hole safe-harbour checks and CISC Part 5 isolated-opening calculations where supported.

Reinforcement and welds

Use engineer-specified or automatically sized reinforcement and weld design.

Governing location

See the controlling face, location, and mechanism. Unsupported conditions are marked unavailable rather than approximated.

Existing-member strengthening

Cover-plate modelling

Model full-length symmetric flange cover plates with section properties updated automatically.

Close Beams product view of a strengthened beam with a flange cover plate

Weld sizing

Calculate plate-to-flange shear flow and size the supported weld path automatically.

Staged load allocation

Split loads between existing and strengthened stages, with deflections combined correctly.

Section design and optimization

Check vs. design modes

Verify a selected member or run an automatic search without losing track of which result you are reviewing.

Selected beam section with alternative design candidates in Beams

Constrained search

Limit candidates by family, depth, weight, or office preferred and excluded lists.

Design alternatives

Compare lightest, shallowest, and lowest-cost options side by side, not one unexplained answer.

Rejection reasons

See why each candidate was ruled out.

Results and diagnostics

Clear result states

See PASS, FAIL, or unavailable. Unsupported checks are never presented as valid.

Beams PASS results showing controlling demand and capacity ratios

Demand and resistance shown

Read the actual demand, resistance, and governing ratio together, not just a percentage.

Navigate to the cause

Jump from a governing result straight to the input that drives it.

Traceable calculation path

Inspect the installed code path, assumptions, and data source behind the result.

Reports and engineering records

Configurable detail

Choose how much detail to include while keeping loads, checks, and results connected.

Beams calculation report showing a passing immutable engineering record

PDF export

Export with project, client, and prepared-by or checked-by fields.

Full lineage

Include combinations, linked reactions, and section provenance automatically.

Immutable calculation history

Pull up any past run exactly as it was calculated, with its engine fingerprint.

Project and office workflow

Multi-beam projects

Create, rename, duplicate, archive, and search beams within a project.

Beams project workspace organizing multiple structural projects

Reusable templates

Save proven beam setups and version section, cost, and template policies across the office.

Autosave and conflict protection

Restore your last session while preventing a stale editor from overwriting a newer revision.

SI and US units

Work in the drawing-native format while calculation values stay canonical.

High-fidelity 3D workspace

Engineering geometry in context

See supports, loads, bracing, deck, studs, and openings together in 3D.

High-fidelity three-dimensional structural beam model in Beams

Persistent camera

Keep your view between Member, Loads, Analysis, and Report.

Click-to-edit

Select a physical object and jump directly to the input that defines it.

Speed and keyboard workflow

Keyboard navigation

Move between workspaces and calculate without leaving the keyboard.

Beams keyboard workflow showing navigation and editing shortcuts

Undo, redo, copy, and paste

Reuse supports, bracing, and loads with safe station placement.

Fast by default

Keep routine beam checks fast even as the underlying model gets more complex.

MCP and AI-agent integration

Connect Copilot, Codex, or Claude

Bring standards-compatible AI clients into authorized Beams tools instead of copying engineering data into a disconnected chat.

Codex, Claude, and GitHub Copilot connected to one deterministic Beams calculation record

Project and beam discovery

Authorized agents can list projects and search CISC and AISC section catalogues.

Agent-controlled engineering updates

Let Codex, Claude, or GitHub Copilot update beam inputs while every result still runs through the deterministic Beams engine.

Deterministic reports

Generate printable reports and retrieve authorized resources tied to the calculation record.

Scoped access

Use OAuth scopes, tenant isolation, role enforcement, and audit logs.

Design the beam. Own the answer.

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