
Explosives Training
Master every phase of professional explosives work, from chemistry and classification to advanced blast design and incident management. This course delivers the technical knowledge and field-ready procedures that blasting professionals need to operate safely and compliantly. Whether you're entering the industry or expanding your expertise, this training covers it all.
What you will learn:
You will build a complete understanding of explosive materials, including their chemistry, physical properties, and regulatory classification. You will learn how to design drill-and-blast patterns, select the right initiation systems, and document blast plans to regulatory standards. The course covers safe storage, compliant transport, and proper handling procedures from receipt to point of use. You will also develop systematic risk assessment skills and emergency response plans for high-hazard environments. Advanced topics include vibration prediction, electronic detonator optimization, controlled demolition, and blast modeling software. By the end, you will be equipped to manage blasting operations safely, legally, and efficiently.
How you study in practice Explosives Training
How you practice Explosives Training
For companies that want to train their team
With Dedika for Business, the course includes exercises and examples tailored to your own business and the way your company needs.
Course content
8 Chapters • 40 LessonsDuration between 4 and 360 hours (you decide)
Chapter 1HideHide detailsSee detailsFoundations of Explosives Science
Foundations of Explosives Science
Lesson 1 • Classification of Explosive Materials
Categorizes explosives by sensitivity, velocity, and application type. Provides the taxonomy used throughout all subsequent chapters.
Lesson 2 • History and Industry Context
Traces the development of explosives from black powder to modern compounds. Establishes why historical milestones shape current safety and handling standards.
Lesson 3 • Chemistry of Explosive Reactions
Explains oxidation-reduction reactions, energy release, and gas expansion in detonation. Connects chemical principles to observable blast effects.
Lesson 4 • Physical Properties and Identification
Covers density, detonation velocity, brisance, and deflagration-to-detonation transition. Students can identify materials by measurable physical characteristics.
Lesson 5 • Regulatory and Compliance Framework
Introduces licensing, transport classification, and storage regulations governing explosive materials. Establishes the compliance mindset required for all professional operations.
Chapter 2HideHide detailsSee detailsSafety Principles and Risk Management
Safety Principles and Risk Management
Lesson 1 • Personal Protective Equipment
Specifies PPE requirements for blasting, storage, and transport tasks. Students select and inspect appropriate equipment for each operational context.
Lesson 2 • Safety Culture in Explosive Operations
Defines safety culture components specific to high-hazard environments. Links individual behavior to organizational accident prevention outcomes.
Lesson 3 • Risk Assessment and Control Hierarchy
Applies probability-consequence matrices to explosive hazards and maps controls to hierarchy levels. Produces actionable risk registers for field operations.
Lesson 4 • Hazard Identification Methods
Teaches systematic techniques for identifying physical, chemical, and procedural hazards. Prepares students to conduct pre-task hazard reviews on any explosive worksite.
Lesson 5 • Emergency Response Planning
Develops site-specific emergency action plans for misfire, fire, and accidental detonation scenarios. Integrates communication protocols and evacuation procedures.
Chapter 3HideHide detailsSee detailsStorage, Transportation, and Handling
Storage, Transportation, and Handling
Lesson 1 • Magazine Design and Construction
Covers construction standards, ventilation, grounding, and security requirements for explosive magazines. Students evaluate magazine suitability for specific material types.
Lesson 2 • Theft Prevention and Security Protocols
Addresses physical security, access control, and loss reporting obligations for explosive materials. Students design security plans meeting regulatory requirements.
Lesson 3 • Manual Handling and Transfer Techniques
Teaches safe manual handling, packaging inspection, and transfer procedures for explosive materials. Reduces initiation risk during routine handling tasks.
Lesson 4 • Transportation Regulations and Procedures
Covers vehicle requirements, placarding, route planning, and driver responsibilities for explosive transport. Students plan compliant transport operations end to end.
Lesson 5 • Inventory and Segregation Practices
Establishes compatibility rules for co-storage and inventory tracking systems. Prevents accidental initiation from incompatible material contact.
Chapter 4HideHide detailsSee detailsInitiation Systems and Components
Initiation Systems and Components
Lesson 1 • Detonators and Their Types
Compares electric, non-electric, and electronic detonators by function, sensitivity, and application. Builds the selection criteria used in subsequent design chapters.
Lesson 2 • Stray Current and Radio Frequency Hazards
Identifies sources of stray electrical energy and radio frequency interference that can initiate electric detonators. Students apply mitigation measures on active sites.
Lesson 3 • Blasting Machines and Firing Devices
Covers capacitor-discharge and battery-powered blasting machines, testing procedures, and safe firing protocols. Students verify machine output before each use.
Lesson 4 • Initiation Train Assembly
Teaches step-by-step assembly of a complete initiation train from primer to firing device. Emphasizes sequence discipline to prevent premature detonation.
Lesson 5 • Detonating Cord and Relay Systems
Explains detonating cord construction, velocity, and use in trunk-line and branch-line configurations. Students design cord-based initiation networks.
Chapter 5HideHide detailsSee detailsBlast Design Fundamentals
Blast Design Fundamentals
Lesson 1 • Rock and Material Properties for Blasting
Covers rock mass characterization, joint orientation, and material strength parameters used in blast design. Links geotechnical data to explosive selection and loading.
Lesson 2 • Blast Geometry and Pattern Design
Teaches burden, spacing, stemming, and subdrill calculations for bench and surface blasting. Students produce scaled pattern drawings from design inputs.
Lesson 3 • Delay Timing and Sequencing
Explains how delay intervals control fragmentation, vibration, and flyrock. Students assign delay sequences to achieve target outcomes.
Lesson 4 • Explosive Selection and Loading
Matches explosive products to hole conditions, water presence, and fragmentation requirements. Students calculate powder factor and charge weight per hole.
Lesson 5 • Blast Plan Documentation
Produces complete blast plans including drawings, charge sheets, and pre-blast checklists. Establishes the documentation standard required for regulatory approval.
Chapter 6HideHide detailsSee detailsBlasting Operations and Execution
Blasting Operations and Execution
Lesson 1 • Firing and Blast Execution
Covers final connection, all-clear signaling, firing command protocol, and observer positioning. Students execute a simulated blast sequence with full procedural compliance.
Lesson 2 • Pre-Blast Site Preparation
Covers exclusion zone establishment, utility clearance, and equipment positioning before loading begins. Prevents third-party exposure and equipment damage.
Lesson 3 • Drilling and Hole Preparation
Addresses drill pattern layout, hole deviation measurement, and hole conditioning before loading. Ensures holes conform to the approved blast design.
Lesson 4 • Loading and Stemming Procedures
Teaches sequential loading of primers, explosives, and stemming material with anti-static precautions. Maintains charge integrity and prevents bridging.
Lesson 5 • Post-Blast Inspection and Re-entry
Establishes re-entry timing, fume clearance assessment, and misfired hole identification procedures. Students conduct systematic post-blast inspections safely.
Chapter 7HideHide detailsSee detailsMisfire and Incident Management
Misfire and Incident Management
Lesson 1 • Unplanned Detonation Response
Covers immediate actions, casualty management, and site security following an accidental detonation. Integrates emergency response plans from the safety chapter.
Lesson 2 • Incident Investigation Techniques
Applies root-cause analysis methods including fault tree and fishbone diagrams to explosive incidents. Produces findings that drive corrective action plans.
Lesson 3 • Reporting and Regulatory Notification
Defines mandatory reporting timelines, content requirements, and agency notification procedures for explosive incidents. Students draft compliant incident reports.
Lesson 4 • Misfire Causes and Prevention
Analyzes electrical, mechanical, and procedural causes of misfires and links each to preventive controls. Builds diagnostic thinking applied in later resolution sections.
Lesson 5 • Misfire Response Procedures
Provides step-by-step protocols for safe approach, waiting periods, and misfire neutralization methods. Students practice decision trees for each misfire scenario.
Chapter 8HideHide detailsSee detailsAdvanced Blast Design and Optimization
Advanced Blast Design and Optimization
Lesson 1 • Specialized Blasting Applications
Covers controlled demolition, underwater blasting, and tunnel perimeter blasting techniques. Students adapt standard design principles to constrained environments.
Lesson 2 • Airblast and Flyrock Management
Quantifies airblast overpressure sources and flyrock trajectory factors, then applies design controls. Students redesign problem blasts to meet overpressure limits.
Lesson 3 • Blast Performance Monitoring and Review
Establishes key performance indicators, fragmentation measurement methods, and design feedback loops. Students use monitoring data to iteratively improve blast designs.
Lesson 4 • Vibration Prediction and Control
Uses scaled-distance equations and site-specific attenuation data to predict and limit ground vibration. Students calculate maximum instantaneous charge for compliance targets.
Lesson 5 • Electronic Detonator Optimization
Leverages programmable delay precision to improve fragmentation, reduce vibration, and control muck pile shape. Students program and verify electronic timing sequences.
Your valid completion certificate
This course is for you:
Entry-level shot firers: seeking structured knowledge to support their first blasting license.
Mining and quarry workers: ready to move from drilling crews into blasting responsibilities.
Construction site supervisors: managing projects where rock excavation or demolition is required.
Safety officers: responsible for auditing and overseeing explosive operations on active sites.
Career changers: transitioning from military or pyrotechnics backgrounds into civilian blasting roles.
Experienced blasters: filling knowledge gaps before pursuing advanced certification or promotion.
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