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SolidWorks Course
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SolidWorks Course

4.3

Master SolidWorks from the ground up and gain the hands-on modelling skills that engineering and manufacturing teams actually demand. This course covers everything from 2D sketching and 3D part modelling to assemblies, engineering drawings, simulation, and sheet metal design. Whether you're entering the field or levelling up your current skills, you'll finish ready to deliver real results.

Dedika for students

What your team will master:

This course takes you through every major area of SolidWorks, starting with the interface and 2D sketching, then advancing into solid part modelling, assembly design, and fully annotated engineering drawings. You'll work with advanced tools, including surface modelling, design tables, multi-body parts, and reference geometry. The simulation chapters teach you how to set up FEA studies, apply loads and fixtures, and read stress and displacement results. Supplementary modules cover sheet metal, weldments, rendering, 3D printing prep, and PDM file management. By the end, you'll have the technical range to handle professional mechanical design projects with confidence.

How your team learns practically SolidWorks Course

How your team practises SolidWorks Course

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Course content

8 Chapters • 40 LessonsDuration between 4 and 360 hours (you decide)

Chapter 1See details

SolidWorks Interface and Navigation

  • Lesson 1 • File Management and Templates

    Explains part, assembly, and drawing file types plus template creation. Ensures consistent document standards across all projects.

  • Lesson 2 • Installing and Launching SolidWorks

    Covers system requirements, installation steps, and first-launch configuration. Establishes a functional workspace before any modelling begins.

  • Lesson 3 • Customising the SolidWorks Environment

    Covers toolbar customisation, background settings, and system options. Prepares a personalised, productivity-optimised workspace.

  • Lesson 4 • Mouse, Keyboard, and View Controls

    Teaches zoom, pan, rotate, and shortcut key usage for 3D navigation. Reduces friction in all subsequent modelling tasks.

  • Lesson 5 • Understanding the SolidWorks Workspace

    Introduces the CommandManager, FeatureManager, and graphics area. Connects workspace literacy to efficient part and assembly creation.

Chapter 2See details

2D Sketch Fundamentals

  • Lesson 1 • Geometric Relations and Constraints

    Explains automatic and manual relations such as coincident, tangent, and parallel. Ensures sketch stability and design intent preservation.

  • Lesson 2 • Smart Dimension and Tolerances

    Covers linear, angular, and radial dimensioning with the Smart Dimension tool. Connects precise dimensioning to manufacturable part geometry.

  • Lesson 3 • Sketch Planes and Coordinate System

    Introduces the three default planes and the role of the origin in sketch placement. Establishes spatial awareness critical for all 3D modelling.

  • Lesson 4 • Core Sketch Entities

    Teaches lines, arcs, circles, rectangles, and splines using the sketch toolbar. Provides the geometric vocabulary for all part features.

  • Lesson 5 • Sketch Editing and Repair Tools

    Teaches trim, extend, mirror, offset, and sketch repair workflows. Enables efficient modification of complex sketches before feature creation.

Chapter 3See details

Core 3D Part Modelling Features

  • Lesson 1 • Hole Wizard and Linear Patterns

    Uses Hole Wizard for standard fastener holes and pattern tools for repetition. Reduces modelling time for symmetric and repeated geometry.

  • Lesson 2 • Loft Feature for Complex Shapes

    Teaches multi-profile lofting with guide curves and start/end constraints. Enables organic and transitional geometry creation.

  • Lesson 3 • Fillet, Chamfer, and Shell Features

    Applies edge treatments and wall-thinning operations to solid bodies. Prepares parts for realistic manufacturing and assembly fit.

  • Lesson 4 • Extrude Boss and Cut Features

    Introduces Extrude Boss/Base and Extrude Cut as primary solid-creation tools. Forms the backbone of most mechanical part designs.

  • Lesson 5 • Revolve and Sweep Features

    Covers Revolve Boss/Cut and Sweep for rotationally symmetric and path-driven geometry. Expands part complexity beyond prismatic shapes.

Chapter 4See details

Advanced Part Modelling Techniques

  • Lesson 1 • Equations and Global Variables

    Introduces the Equations dialog for linking dimensions with mathematical expressions. Enables parametric design where one change updates the entire model.

  • Lesson 2 • Reference Geometry Creation

    Teaches construction of reference planes, axes, and coordinate systems. Enables feature placement on non-standard orientations and complex surfaces.

  • Lesson 3 • Multi-Body Part Modelling

    Covers creating and managing multiple solid bodies within a single part file. Supports complex machined parts and mould design workflows.

  • Lesson 4 • Design Tables and Configurations

    Uses Excel-driven design tables to generate part configurations from a single model. Enables product families without duplicating files.

  • Lesson 5 • Draft, Rib, and Dome Features

    Applies draft angles, structural ribs, and dome surfaces to part geometry. Addresses injection-moulding and structural reinforcement design needs.

Chapter 5See details

Assembly Modelling and Mates

  • Lesson 1 • Assembly Patterns and Mirroring

    Applies linear, circular, and mirror operations to replicate components in assemblies. Reduces repetitive insertion work for symmetric designs.

  • Lesson 2 • Interference Detection and Analysis

    Uses interference detection and clearance verification tools to validate assembly fit. Catches design errors before physical prototyping.

  • Lesson 3 • Assembly Environment Fundamentals

    Introduces the assembly workspace, component insertion, and the FeatureManager tree. Establishes the structural foundation for multi-part assemblies.

  • Lesson 4 • Advanced and Mechanical Mates

    Teaches gear, cam, slot, hinge, and path mates for mechanism simulation. Enables realistic kinematic behaviour in complex assemblies.

  • Lesson 5 • Standard Mates and Constraints

    Covers coincident, concentric, parallel, perpendicular, and distance mates. Fully constrains component position and orientation in 3D space.

Chapter 6See details

Engineering Drawings and Annotations

  • Lesson 1 • Drawing Sheet and View Setup

    Covers sheet format selection, title block editing, and standard view projection. Establishes a professional drawing layout from the start.

  • Lesson 2 • Geometric Dimensioning and Tolerancing

    Introduces GD&T symbols, datum references, and feature control frames. Communicates form, orientation, and position requirements precisely.

  • Lesson 3 • Bill of Materials and Balloons

    Generates assembly BOMs and links balloon annotations to component rows. Produces complete documentation packages for manufacturing and procurement.

  • Lesson 4 • Dimensions and Tolerances in Drawings

    Applies model-driven and manual dimensions with tolerance formats to drawing views. Ensures drawings meet dimensional accuracy requirements.

  • Lesson 5 • Section and Detail Views

    Teaches section cuts, aligned sections, and detail view magnification. Reveals internal geometry and critical features not visible in standard views.

Chapter 7See details

Surface Modelling Essentials

  • Lesson 1 • Hybrid Solid and Surface Workflows

    Integrates surface and solid tools using Replace Face and Indent operations. Produces final parts that combine the precision of both modelling approaches.

  • Lesson 2 • Lofted and Filled Surfaces

    Creates smooth lofted surfaces and fills gaps with the Fill Surface tool. Enables closed, watertight surface models for downstream use.

  • Lesson 3 • Surface Editing and Trimming

    Covers trim, untrim, extend, knit, and offset surface operations. Enables precise surface shaping and preparation for solid conversion.

  • Lesson 4 • Introduction to Surface Modelling

    Distinguishes surface bodies from solid bodies and explains when surfaces are preferred. Frames surface modelling as a complement to solid workflows.

  • Lesson 5 • Extruded, Revolved, and Swept Surfaces

    Applies extrude, revolve, and sweep operations to create open surface bodies. Builds surface vocabulary parallel to solid feature knowledge.

Chapter 8See details

Simulation and Design Validation

  • Lesson 1 • Motion Analysis Fundamentals

    Uses SolidWorks Motion to simulate kinematic and dynamic assembly behaviour. Validates mechanism performance before physical prototyping.

  • Lesson 2 • Interpreting FEA Results

    Analyses stress, displacement, and factor-of-safety plots from completed studies. Translates numerical output into actionable design improvements.

  • Lesson 3 • Meshing and Running Studies

    Covers mesh generation, mesh control, and study execution. Mesh quality directly affects result accuracy and solver performance.

  • Lesson 4 • SolidWorks Simulation Setup

    Introduces the Simulation add-in, study types, and material assignment workflow. Establishes the analysis environment before any loads are applied.

  • Lesson 5 • Fixtures, Loads, and Contacts

    Defines boundary conditions including fixed geometry, forces, pressures, and contacts. Accurate setup here determines the validity of all FEA results.

Certification

Your valid completion certificate

This course is for you:

  • Mechanical engineering students: ready to add industry-standard CAD to their toolkit.

  • Manufacturing technicians: looking to move into design roles with proven software skills.

  • Product designers: wanting to replace manual workflows with parametric 3D modelling.

  • Career changers: entering engineering fields and needing a credible, buildable skill set.

  • Hobbyists and makers: serious about designing precise, printable parts from scratch.

  • Junior CAD users: trained on other platforms and transitioning their skills to SolidWorks.

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