Mechanical engineering solution

Document how the machine fits and moves.With every interface in view.

Create ISO-oriented technical drawings and mechanical system schematics with dimensions, datums, tolerances, piping, motion, and specifications that connect the physical design to every other discipline.

  • 196 mechanical symbols
  • 13 cited presets
  • Dimensions + GD&T
  • Motion + flow
AURELIA-R1 · mechanical architectureSource-rendered project
Editable AURELIA-R1 mechanical architecture with chassis, joints, drive assemblies, sensors, loads, and interface relationships

Rendered from the checked-in AURELIA-R1 mechanical project used by the application.

InputServo motorRotary power
TransmitGear reducerRatio · torque · datum
ConvertBall screw400 mm travel
OutputCarriage loadGuided motion
@
Interface linkedEnvelope and load case

Physical design with shared context

Move from system concept to reviewable mechanical intent.

Combine system-level clarity with the drafting conventions, metadata, and references needed to communicate geometry and interfaces precisely.

Build technical drawings

Use proportioned features, visible and hidden lines, center marks, dimensions, leaders, datums, GD&T, finish, and weld callouts.

  • ISO-oriented line conventions
  • Dimensions, datums, and tolerances
  • Title blocks and drawing metadata

Explain motion and flow

Map mechanisms, transmission, actuation, piping, fluid paths, loads, and physical interfaces without losing system behavior.

  • Rotary and linear relationships
  • Liquid flow and piping
  • Assembly and load context
@

Connect design intent

Link requirements, calculations, material decisions, tolerance rationale, and interface control details to the exact feature or component.

  • Precise spec references
  • Bidirectional backlinks
  • Versioned design review

Mechanical work in Struct

Show interfaces, dimensions, datum intent, and physical constraints.

Build editable mechanical system views with drafting semantics, then connect calculations and requirements to the affected geometry and interfaces.

For fluid-power work, use the focused hydraulic schematic software workflow with ISO 1219-oriented symbols, named ports, and separate hydraulic and pneumatic line functions.

  • 01196 mechanical symbolsDrawing geometry, actuation, transmission, structure, loads, fluid power, thermal, and production elements.
  • 0213 specification-backed presetsDrafting lines, dimensions, leaders, process flow, fluid power, shaft power, linkage, and heat-transfer semantics.
  • 03Engineering metadataRecord material, mass, load, travel, envelope, tolerance, interface, and ownership context.
  • 04Review and PDF outputLink Specifications, anchor Review threads, save versions, and export fitted project documents.

Mechanical design workflow

Frame, detail, verify, and integrate.

Keep physical design understandable to the electrical, controls, software, manufacturing, and service teams that depend on it.

01

Define the physical architecture

Show assemblies, loads, actuation, interfaces, envelopes, and critical paths at system level.

02

Add drafting detail

Apply dimensions, datums, tolerances, surface, weld, center, hidden, and leader conventions.

03

Link requirements and calculations

Attach load cases, materials, interfaces, safety factors, and rationale to the design.

04

Review the complete machine

Connect mechanical intent to power, controls, software behavior, safety, and production context.