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Energetic Materials and Techniques

Editat de Luigi T. De Luca, Ruth M. Doherty
en Limba Engleză Hardback – 17 iun 2026
Enables reader to develop efficient, powerful, and safe propulsion systems
Energetic Materials and Techniques explores cutting-edge developments in the area of energetic materials. I focuses on innovations in the materials themselves, as well as on advances in experimental techniques and computational approaches, such as the integration of artificial intelligence and machine learning to enhance material properties and performance. It delves into the combustion of micro- and nano-sized metals, which hold promise for improving the efficiency and power of propulsion systems, and covers the sensitivity of energetic materials and carbon-free energy carriers Environmental and safety concerns, as well as the latest developments in solid and hybrid rocket propulsion, are also covered. At the end of the text, readers will find advanced computational techniques for modeling and simulation in combustion.
Written by a team of highly qualified authors with significant experience in the field, Energetic Materials and Techniques addresses many high-interest topics, including the following:
  • Neural networks' role in development of a high-energy materials genome and problems and approaches for estimating the enthalpy of formation of energetic materials
  • Combustion of silicon as a carbon-free energy carrier and theoretical developments in combustion of aluminum-based reactive materials
  • Ammonium nitrate-based cocrystals as promising oxidizers for solid rocket propellants and preliminary particle size distribution measurements in a new installation that reduces inherent bias
  • Surface accumulation layers in metallized solid fuel propulsion and hypergolic propellants based on hydrogen peroxide oxidizer
  • Accelerated combustion simulations of hydrogen-air flames in the HYLON swirled injector in OpenFOAM
Energetic Materials and Techniques serves as an essential up-to-date reference on the subject for both researchers and industry professionals. It is also valuable for funding agencies seeking to support both near- and long-term research projects in high-energy materials and propulsion.
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Specificații

ISBN-13: 9783527355457
ISBN-10: 3527355456
Pagini: 752
Dimensiuni: 172 x 251 x 46 mm
Greutate: 1.71 kg
Editura: Wiley-VCH GmbH

Notă biografică

Luigi T. DeLuca received his Ph.D. from Princeton University, USA, in 1976. He is currently a Visiting Professor at Nanjing University of Science & Technology, Nanjing, China.

Ruth M. Doherty received her degrees in Chemistry at the University of Maryland (M.S in Organic Chemistry; Ph.D. in Physical Chemistry). After a long career in federal service, she is now a Senior Chemist at the Energetics Technology Center.


Cuprins

Volume 1

List of Contributors xiii
Foreword xxiii
About the Editors xxv
Preface xxvii
Acknowledgement xxxv

Part I Novel and Future Energetic Materials 1

1 Application of AI and ML to Novel Energetic Materials 3
Ruth M. Doherty, Victor S. Abrukov, Zois Boukouvalas, Stephen S. Baek, and Raphael Terreux

2 Smart Energetic Materials: Concepts, Principles, and Verifications 19
Ruiqi Shen, Xiaowei Zang, and Wei Zhang

3 Neural Networks in the Development of High-energy Materials Genome 57
Victor S. Abrukov, Weiqiang Pang, Darya Anufrieva, and Daniil Sapyorov

4 Problems and Approaches for Estimating the Enthalpy of Formation of Energetic Materials 89
Thomas M. Klapötke, Amr Helmy, Jasmin T. Lechner, and Elena Reinhardt

Part II Energetic Materials for Chemical Propulsion and Power Generation 159

5 Investigation on the Combustion of Silicon as a Carbon-free Energy Carrier 161
Volker Weiser, Stefan Kelzenberg, Sebastian Knapp, and Andreas Koleczko

6 Combustion of Aluminum-based Reactive Materials: An Overview of Theoretical Developments 193
Alain Esteve and Carole Rossi

7 Stepwise Decomposition and Synergistic Oxidation Coupling in the Combustion Process of Magnesium Diboride Particles 225
Daolun Liang, Weidong Zhong, Dekui Shen, Richen Lin, and Jianzhong Liu

8 Advances and Applications of Functionalized Graphene in Metal Fuel Combustion: A Review 251
Yue Jiang, Lijun Yang, and WeiQiang Pang

Part III Sensitivity of Energetic Materials 273

9 Research Progress on the Physicochemical Mechanisms of Mechanical Sensitivity of Nitramine Crystals 275
Hao-Rui Zhang and Qi-Long Yan

10 Insights into the Impact Sensitivity of Cyclic Nitramines 303
Svatopluk Zeman and Veerabhadragouda B. Patil

11 Physics-aware Deep Learning Methods for Modeling Spatiotemporal Dynamics in Energetic Materials 331
Stephen S. Baek, Joseph B. Choi, Xinlun Cheng, and H. S. Udaykumar

Volume 2

Part IV Solid Rocket Propulsion 365

12 Metal Oxides Catalysis of AN/AP Modern Solid Propellants 367
Alexander Gromov, Luwen Zhang, and Neel Kamal Gupta

13 Novel Graphene-based and g-C3N4-based Combustion Catalysts for Solid Propellants 381
Suhang Chen, Lianpeng Cui, Kui Tang, Jie Zhang, and Kangzhen Xu

14 Ammonium Nitrate-based Cocrystals: Promising Oxidizers for Solid Rocket Propellants 413
Djalal Trache, Amir Abdelaziz, Ahmed Fouzi Tarchoun, Yash Pal, Hani Boukeciat, Slimane Bekhouche, Mohammed Jouini, Nawel Matmat, Weiqiang Pang, and Luigi T. DeLuca

15 On the Preliminary Particle Size Distribution Measurements in a New Installation that Reduces Inherent Bias 445
Jouke Hijlkema, Quentin Levard, and Aurélie Jankowiak

16 Opportunities and Challenges of a New UV-based 3D Printing Technique for Composite Solid Propellants 465
Filippo Maggi, Stefania Carlotti, Alessandra Noemi Lucarno, Filippo Masseni, and Dario Giuseppe Pastrone

17 A Model on Burn Rate Scaling for Solid Rocket Motor Performance Prediction 485
Adriano Annovazzi, Emanuela Gizzi, and Barbara Betti

Part V Hybrid Rocket Propulsion 509

18 Metal-organic Hybrid Hypergolic Materials 511
Shan Wang, Tian-Li Pu, Jing-Long Zhao, Xin-Yao Zhao, and Qian-You Wang

19 Paraffin-based Fuels for Hybrid Propulsion: Metal Additives Versus 3D-printed Cellular Structures for Regression Rate Enhancement 541
Christian Paravan, Federico Giambelli, Valerio Santolini, and Riccardo Bisin

20 Surface Accumulation Layers (SALs) in Metallized Solid Fuel Propulsion 563
James C. Thomas and Calvin Nguyen

21 Hypergolic Propellants Based on Hydrogen Peroxide Oxidizer 601
Jagadish Das, Amarveer Pratap Rana, Deepan Chowdhury, Bhaskara Rao Latchipatula, and Michael Gozin

Part VI Modern Computational Techniques 655

22 A Numerical Study of Combustion Characteristics of an HTPB-based Propellant Under Rotational Sweep Flow 657
Liu Xingyu, Wu Yan, Xue Haifeng, Li Yingkun, and Chen Xiong

23 Accelerated Combustion Simulations of Hydrogen-Air Flames in the HYLON Swirled Injector in OpenFOAM 671
Federico Ghioldi and Federico Piscaglia

Acknowledgments 686
References 686
Index 689