
Basic Rigging and Lifting Course
Get the foundational rigging, hoisting, and material handling knowledge that keeps crews safe and lifts on schedule. From sling configurations and crane load charts to lift planning and hand signals, this course covers the real-world skills employers demand. Whether you're new to the trade or sharpening your credentials, this is where competence starts.
What your team will master:
Identify and inspect rigging hardware, slings, and wire rope using industry discard criteria.
Calculate working load limits across vertical, choker, and basket hitch configurations.
Read crane load charts to determine safe lift parameters for any radius and boom setup.
Develop written lift plans covering rigging, personnel roles, and emergency contingencies.
Apply standardised hand signals and radio protocols to co-ordinate multi-crew hoisting operations.
Recognise struck-by, caught-in, and environmental hazards before any lift begins.
How your team learns in practice Basic Rigging and Lifting Course
How your team practises Basic Rigging and Lifting Course
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Course content
8 Chapters • 40 LessonsDuration between 4 and 360 hours (you decide)
Chapter 1HideHide detailsSee detailsFoundations of Rigging and Hoisting
Foundations of Rigging and Hoisting
Lesson 1 • Industry Terminology and Scope
Defines rigging, hoisting, and material handling as distinct disciplines. Establishes shared vocabulary used throughout the course.
Lesson 2 • Regulatory Framework Overview
Surveys workplace safety regulations and employer obligations governing rigging operations. Establishes compliance as a non-negotiable baseline.
Lesson 3 • Personal Protective Equipment
Identifies PPE required for rigging and hoisting tasks and explains selection criteria. Proper PPE use is reinforced as a daily habit.
Lesson 4 • Hazard Recognition Basics
Introduces common rigging hazards including struck-by, caught-in, and electrical risks. Students practise identifying hazards before progressing to equipment use.
Lesson 5 • Physics of Load and Force
Introduces centre of gravity, load weight, and force vectors. Connects physics principles directly to safe lift planning.
Chapter 2HideHide detailsSee detailsRigging Hardware and Components
Rigging Hardware and Components
Lesson 1 • Synthetic and Chain Slings
Covers nylon, polyester, and chain sling construction, ratings, and limitations. Students apply sling selection criteria based on load shape and environment.
Lesson 2 • Wire Rope Construction and Types
Explains wire rope lay, strand count, and core types used in rigging. Students distinguish rope constructions and select appropriately for load conditions.
Lesson 3 • Hooks, Shackles, and Links
Identifies hook types, shackle patterns, and connecting hardware with rated capacities. Students practise reading load ratings and matching hardware to applications.
Lesson 4 • Blocks, Sheaves, and Pulleys
Explains mechanical advantage through block-and-tackle systems and sheave sizing. Students calculate line pull reductions using reeving diagrams.
Lesson 5 • Hardware Inspection Procedures
Establishes go/no-go inspection criteria for all rigging hardware before each use. Students practise rejection decisions using industry discard criteria.
Chapter 3HideHide detailsSee detailsSling Configurations and Load Angles
Sling Configurations and Load Angles
Lesson 1 • Rigging Configuration Calculations
Integrates hitch type, sling angle, and load weight into complete capacity calculations. Students solve multi-variable rigging problems before advancing to lift planning.
Lesson 2 • Softeners, Pads, and Edge Protection
Explains how sharp edges reduce sling capacity and how padding restores it. Students apply edge protection selection rules to load scenarios.
Lesson 3 • Basic Hitch Types
Defines vertical, choker, and basket hitches with capacity relationships. Students select the correct hitch for load shape and stability requirements.
Lesson 4 • Sling Angle and Tension Effects
Demonstrates how decreasing sling angle exponentially increases leg tension. Students use sling angle factors to recalculate safe working loads.
Lesson 5 • Multi-Leg Sling Arrangements
Covers two-leg, three-leg, and four-leg bridle slings and load distribution assumptions. Students calculate per-leg tension for asymmetric loads.
Chapter 4HideHide detailsSee detailsCranes and Hoisting Equipment
Cranes and Hoisting Equipment
Lesson 1 • Crane Stability and Tipping
Covers tipping fulcrum, counterweight function, and dynamic load effects on stability. Students identify conditions that reduce rated capacity below chart values.
Lesson 2 • Crane Load Charts and Ratings
Explains how load charts encode radius, boom angle, and configuration limits. Students extract rated capacities for specific lift scenarios from actual chart formats.
Lesson 3 • Crane Types and Applications
Surveys mobile, overhead, tower, and jib cranes with typical use cases. Students match crane type to site conditions and load requirements.
Lesson 4 • Pre-Operation Crane Inspection
Establishes daily and periodic inspection requirements for cranes and hoists. Students complete a structured inspection checklist before simulated crane operation.
Lesson 5 • Hoists, Chain Falls, and Come-Alongs
Identifies manual and powered hoisting devices, their rated capacities, and proper use. Students select the correct hoist for load weight and travel distance.
Chapter 5HideHide detailsSee detailsMaterial Handling Equipment and Techniques
Material Handling Equipment and Techniques
Lesson 1 • Forklift Pre-Operation and Travel
Covers daily inspection, safe travel speed, and load positioning during transport. Students complete a pre-operation checklist and practise safe travel posture.
Lesson 2 • Conveyor and Roller Systems
Introduces gravity and powered conveyor types, guarding requirements, and safe loading practices. Students identify pinch points and apply lockout procedures before maintenance.
Lesson 3 • Manual Lifting and Ergonomics
Applies biomechanical principles to safe manual lifting, carrying, and team lift coordination. Students practise correct technique and identify tasks requiring mechanical assistance.
Lesson 4 • Pallet Jacks and Hand Trucks
Explains manual and powered pallet jack operation, capacity limits, and safe manoeuvring. Students apply ergonomic push-pull principles to reduce injury risk.
Lesson 5 • Forklift Types and Capacities
Identifies counterbalance, reach, and rough-terrain forklifts with their rated capacities and load centres. Students read data plates and match forklift to load and surface.
Chapter 6HideHide detailsSee detailsLift Planning and Risk Assessment
Lift Planning and Risk Assessment
Lesson 1 • Pre-Lift Meeting and Toolbox Talk
Establishes the purpose and content of pre-lift briefings for all crew members. Students conduct a simulated pre-lift meeting using their completed lift plan.
Lesson 2 • Written Lift Plan Development
Walks through each section of a written lift plan including rigging, crane, and personnel assignments. Students draft a complete plan using a standard template.
Lesson 3 • Standard vs. Critical Lift Classification
Defines thresholds that elevate a lift to critical status requiring enhanced planning. Students classify lifts and apply the appropriate planning protocol.
Lesson 4 • Load Weight and Centre of Gravity
Covers methods for determining load weight and locating centre of gravity before lifting. Accurate data prevents tip-over and rigging overload.
Lesson 5 • Site Survey and Hazard Mapping
Guides students through pre-lift site assessment including overhead, underground, and traffic hazards. Findings feed directly into the lift plan document.
Chapter 7HideHide detailsSee detailsSignalling, Communication, and Coordination
Signalling, Communication, and Coordination
Lesson 1 • Multi-Crane and Tandem Lift Coordination
Addresses communication hierarchy and load-sharing protocols for tandem crane lifts. Students assign roles and rehearse communication sequences for a two-crane scenario.
Lesson 2 • Roles of Signalperson and Dogger
Defines qualification requirements and exclusive authority of the designated signalperson. Students identify when a signalperson is mandatory and who may give signals.
Lesson 3 • Standard Hand Signal System
Teaches the complete set of industry-standard hand signals for crane and hoist operations. Students practise each signal until execution is automatic and unambiguous.
Lesson 4 • Radio and Electronic Communication
Covers radio protocol, channel discipline, and backup communication methods. Students apply radio procedures during simulated blind-lift exercises.
Lesson 5 • Tag Line Use and Load Control
Explains tag line attachment, length, and technique for controlling suspended load swing. Students practise tag line management during low-height lift simulations.
Chapter 8HideHide detailsSee detailsAdvanced Rigging Operations and Special Lifts
Advanced Rigging Operations and Special Lifts
Lesson 1 • Incident Response and Near-Miss Reporting
Establishes immediate response steps for rigging failures, dropped loads, and crane incidents. Students practise incident documentation and near-miss reporting to drive continuous improvement.
Lesson 2 • Tandem and Multi-Crane Lifts
Applies load-sharing calculations and synchronised movement protocols to two-crane and three-crane lifts. Students produce an engineered lift plan for a tandem scenario.
Lesson 3 • Below-the-Hook Lifting Devices
Covers spreader bars, lifting beams, vacuum lifters, and custom fixtures with design and inspection requirements. Students select and inspect below-the-hook devices for given load profiles.
Lesson 4 • Personnel Hoisting Requirements
Establishes the strict regulatory and equipment requirements for hoisting workers in a personnel basket. Students identify all conditions that must be met before personnel hoisting begins.
Lesson 5 • Confined Space and Restricted Area Lifts
Addresses rigging challenges in confined spaces including limited headroom, restricted access, and atmospheric hazards. Students adapt standard lift plans to confined-space constraints.
Your valid completion certificate
This course is for you:
New construction worker: needs structured safety knowledge before handling rigging gear.
Warehouse associate: wants to move into material handling equipment operation roles.
Apprentice ironworker: requires foundational theory to complement hands-on trade training.
Career changer: transitioning from unrelated work into a skilled industrial trade.
Maintenance technician: regularly uses hoists and needs formal competency documentation.
Safety coordinator: building working knowledge of rigging operations to support site oversight.
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