Analytical Techniques & Hazard Characterization
Develop essential skills for the analysis and characterization of high-energy materials. This specialized training combines analytical
techniques, thermal analysis, spectroscopy, and hazard characterization to help engineers and scientists understand material behaviour,
identify potential risks, and support safe handling and testing practices.
Explore all possibilities
Analysis, Characterization & Testing - SAES
Analytical techniques / hazard characterization
Master the essential skills for safely handling high-energy compounds in our specialized course on Analytical Techniques and Hazard Characterization. You will learn to apply
advanced thermal and spectroscopic methods to predict material behavior, identify decomposition risks, and establish rigorous safety protocols. Designed for engineers and scientists, this program bridges the gap between chemical innovation and operational safety, ensuring compliance with global regulatory standards.
Location
Language
EQF-Level
Course Provider
Cartagena
English / Spanish
5
SAES
Duration
Study Time
Min. Participants
Max. Participants
4 Weeks
80 hours
10
20
Health, Environment, Storage & Transport, Security, Quality - TNO
Laws and regulations, STANAG, AOP, MILSTD, etc.
Master the global regulatory landscape for energetic materials in our focused module on Laws, Standards, and Compliance. We break down critical frameworks like NATO
STANAGs, Allied Ordnance Publications (AOPs), and U.S. MIL-STDs, showing how they integrate into the broader Health, Environment, Safety, Security, and Quality (HESQ) ecosystem. This training equips professionals to navigate complex legal mandates, ensure cross- border interoperability, and uphold rigorous operational integrity in the defense and aerospace sectors.
Location
Language
EQF-Level
Course Provider
The Hague - Ypenburg
English / Dutch
4
TNO
Duration
Study Time
Min. Participants
Max. Participants
3 Months
150 hours
8
12
Detonics - ICT
Gurney energy and work capacity of explosives
Understand the fundamental physics of explosive performance by examining Gurney energy, fragment velocity, and work capacity. The course introduces the physical principles
used to assess the conversion of chemical energy into kinetic and mechanical effects. Designed for engineers and technical professionals, it provides a foundation for understanding energetic performance and its application in controlled engineering analysis.
Location
Language
EQF-Level
Course Provider
Pfinztal
German
5
ICT
Duration
Study Time
Min. Participants
Max. Participants
4 Classes
8 hours
15
30
Fundamentals - Cranfield University
Fundamentals of Energetic Materials
Develop a solid understanding of energetic materials in this introductory course covering their fundamental scientific principles, properties, classification, and applications.
Participants gain the technical vocabulary and conceptual foundation required to progress toward more advanced training in synthesis, characterization, detonics, modelling, and safety.
Location
Language
EQF-Level
Course Provider
Cranfield
English
4
Cranfield University
Duration
Study Time
Min. Participants
Max. Participants
1 Week
40 hours
10
25
Preparation & Processing - University of Pardubice
Engineering of Energetic Materials
Develop advanced knowledge of energetic materials through a course covering their chemistry, formulation, processing, and engineering properties. Participants examine how
material composition and processing influence performance, stability, quality, and safety. The programme provides a strong bridge between fundamental chemistry and the engineering of practical energetic-material systems.
Location
Language
EQF-Level
Course Provider
Pardubice
English
7
University of Pardubice
Duration
Study Time
Min. Participants
Max. Participants
3 Months
120 hours
10
25
Applications & Effects - Cranfield University
Applications and Effects of Energetic Materials
Explore the engineering applications and physical effects of energetic materials across defence, aerospace, industrial, and specialist systems. This course introduces the
relationship between material characteristics, system design, energy release, and resulting effects, providing participants with a structured understanding of how energetic technologies are evaluated and applied.
Location
Language
EQF-Level
Course Provider
Cranfield
English
6
Cranfield University
Duration
Study Time
Min. Participants
Max. Participants
2 Weeks
60 hours
10
25
Modelling - OZM
Thermochemical Modelling of Energetic Materials
Develop an understanding of thermochemical modelling and its application to energetic materials. The course introduces the principles behind thermochemical calculations,
interpretation of model outputs, and the use of specialised computational tools to support energetic-material research and engineering. Participants learn how modelling can complement experimental testing and inform technical decision-making.
Location
Language
EQF-Level
Course Provider
Brno
English / Czech
6
OZM
Duration
Study Time
Min. Participants
Max. Participants
1 Week
40 hours
8
20
Hands-on Training - REASeuro
Hands-on Experimental Training in Energetic Materials
Gain practical experience with experimental approaches used to assess energetic materials in a controlled professional environment. This hands-on programme introduces
laboratory and testing practices, measurement techniques, safety procedures, and interpretation of experimental results. Participants develop confidence in applying theoretical knowledge to controlled experimental scenarios while maintaining rigorous safety and quality standards.
Location
Language
EQF-Level
Course Provider
Rijssen
English / Dutch
5
REASeuro
Duration
Study Time
Min. Participants
Max. Participants
1 Week
40 hours
6
12