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  • Books  (18)
  • Maschinenwesen, Werkstoffwissenschaften, Fertigungstechnik, Bergbau u. Hüttenwesen, Verkehrstechnik, Feinwerktechnik  (18)
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  • Books  (18)
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  • 1
    Keywords: heat transfer ; mass transfer ; nanofluids
    Description / Table of Contents: Chapter 1: Numerical Analysis of Three-Dimensional MHD Nanofluid Flow over a Stretching Sheet with Convective Boundary Conditions through a Porous Medium by Stanford Shateyi --- Chapter 2: Cattanneo-Christov Heat Flux Model Study for Water-Based CNT Suspended Nanofluid Past a Stretching Surface by Noreen Sher Akbar, C. M. Khalique and Zafar Hayat Khan --- Chapter 3: Thermophysical Properties of Metal Oxides Nanofluids by Zafar Said and Rahman Saidur --- Chapter 4: Measuring Nanofluid Thermal Diffusivity and Thermal Effusivity: The Reliability of the Photopyroelectric Technique by Monir Noroozi and Azmi Zakaria --- Chapter 5: Problems Faced While Simulating Nanofluids by Adil Loya --- Chapter 6: Enhancing Heat Transfer in Internal Combustion Engine by Applying Nanofluids by Wenzheng Cui, Zhaojie Shen, Jianguo Yang and Shaohua Wu --- Chapter 7: Heat Transfer of Ferrofluids by Seval Genc --- Chapter 8: Nanofluid with Colloidal Magnetic Fe3O4 Nanoparticles and Its Applications in Electrical Engineering by Lucian Pîslaru-Dănescu, Gabriela Telipan, Floriana D. Stoian, Sorin Holotescu and Oana Maria Marinică --- Chapter 9: Magnetic Nanofluids: Mechanism of Heat Generation and Transport and Their Biomedical Application by Prem P. Vaishnava and Ronald J. Tackett --- Chapter 10: Energy Transfer in Mixed Convection MHD Flow of Nanofluid Containing Different Shapes of Nanoparticles in a Channel Filled with Saturated Porous Medium by Aaiza Gul, Ilyas Khan and Sharidan Shafie
    Pages: Online-Ressource (282 Seiten)
    ISBN: 9789535130086
    Language: English
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  • 2
    Keywords: computational fluid dynamics
    Description / Table of Contents: Chapter 1: High-Performance Computing: Dos and Don’ts by Guillaume Houzeaux, Ricard Borrell, Yvan Fournier, Marta Garcia- Gasulla, Jens Henrik Göbbert, Elie Hachem, Vishal Mehta, Youssef Mesri, Herbert Owen and Mariano Vázquez --- Chapter 2: Multilevel Variable-Block Schur-Complement-Based Preconditioning for the Implicit Solution of the Reynolds- Averaged Navier-Stokes Equations Using Unstructured Grids by Bruno Carpentieri and Aldo Bonfiglioli --- Chapter 3: Free-Surface Flow Simulations with Smoothed Particle Hydrodynamics Method using High-Performance Computing by Corrado Altomare, Giacomo Viccione, Bonaventura Tagliafierro, Vittorio Bovolin, José Manuel Domínguez and Alejandro Jacobo Cabrera Crespo --- Chapter 4: Highly Deforming Computational Meshes for CFD Analysis of Twin-Screw Positive Displacement Machines by Sham Rane, Ahmed Kovačević, Nikola Stošić and Ian Smith --- Chapter 5: Optimization Design by Coupling Computational Fluid Dynamics and Genetic Algorithm by Jong-Taek Oh and Nguyen Ba Chien --- Chapter 6: Applications of CFD for Process Safety by Luis G. Zárate, Sebastián Uribe and Mario E. Cordero --- Chapter 7: Adaptation to Climate Change at Local Scale: A CFD Study in Porto Urban Area by Vera Rodrigues, Sandra Rafael, Sandra Sorte, Sílvia Coelho, Hélder Relvas, Bruno Vicente, Joana Leitão, Myriam Lopes, Ana Isabel Miranda and Carlos Borrego --- Chapter 8: Computational Fluid Dynamics (CFD) Applied to a Glass Vaporization Chamber for Introduction of Micro- or Nano-Size Samples into Lab-Based ICPs and to a CFD-Derived (and Rapidly Prototyped Via 3D Printing) Smaller-Size Chamber for Portable Microplasmas by Hamid R. Badiei, Gordon Stubley, Ryan Fitzgerald, Melanie Saddler and Vassili Karanassios --- Chapter 9: Analysis of Biomass Waste Cofiring into Existing Coal-Fired Power Plant Using Computational Fluid Dynamics by Arif Darmawan, Dwika Budianto, Koji Tokimatsu and Muhammad Aziz --- Chapter 10: CFD Modelling of Coupled Multiphysics-Multiscale Engineering Cases by Mario E. Cordero, Sebastián Uribe, Luis G. Zárate, Reyna Natividad Rangel, Alejandro Regalado-Méndez and Ever Peralta Reyes --- Chapter 11: CFD Analysis of Turbulence Models to Achieve the Digester Mixing Process by Jorge Flores-Velazquez, Abraham Jesus Arzeta-Rios, Waldo Ojeda Bustamante and Teodoro Espinosa-Solares --- Chapter 12: CFD for the Design and Optimization of Slurry Bubble Column Reactors by Omar M. Basha and Badie I. Morsi --- Chapter 13: Two Different Formulations for Solving the Navier-Stokes Equations with Moderate and High Reynolds Numbers by Blanca Bermúdez, Alejandro Rangel-Huerta, Wuiyevaldo Fermín Guerrero-Sánchez and José David Alanís --- Chapter 14: Vibration Characteristics of Fluid-Filled Functionally Graded Cylindrical Material with Ring Supports by Muzamal Hussain, Aamir Shahzad, Muhammad Nawaz Naeem and Maogang He --- Chapter 15: CFD Simulations of Crude Oil Fouling on Heat Transfer Surfaces by Ramasamy Marappa Gounder and Sampath Emani --- Chapter 16: Surrogate Model Applied for Analysis of Uncertain Parameters in Turbulent Mixing Flows by Boštjan Končar, Andrej Prošek and Matjaž Leskovar
    Pages: Online-Ressource (410 Seiten)
    ISBN: 9789535137917
    Language: English
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  • 3
    Unknown
    Basel, Beijing, Wuhan : MDPI
    Keywords: climate ; time of wetness ; climate change ; aerosols ; particle induced corrosion ; chloride-rich atmospheres ; de-icing salts ; impact of atmospheric corrosion on the environment (runoff) ; prediction ; modelling ; degradation and conservation of cultural heritage ; weathering steels ; copper (alloys) ; surface coatings ; worldwide atmospheric corrosion research ; new analytical techniques
    Description / Table of Contents: Nishimura, T. Rust Formation Mechanism on Low Alloy Steels after Exposure Test in High Cl− and High SOx Environmen. Materials 2017, 10(2), 199; doi:10.3390/ma10020199. http://www.mdpi.com/1996-1944/10/2/199 --- Chang, T.; Odnevall Wallinder, I.; de la Fuente, D.; Chico, B.; Morcillo, M.; Welter, J.; Leygraf, C. Analysis of Historic Copper Patinas. Influence of Inclusions on Patina Uniformity. Materials 2017, 10(3), 298; doi:10.3390/ma10030298. http://www.mdpi.com/1996-1944/10/3/298 --- Na, O.; Cai, X.; Xi, Y. Corrosion Prediction with Parallel Finite Element Modeling for Coupled Hygro-Chemo Transport into Concrete under Chloride-Rich Environment. Materials 2017, 10(4), 350; doi:10.3390/ma10040350. http://www.mdpi.com/1996-1944/10/4/350 --- Kreislova, K.; Knotkova, D. The Results of 45 Years of Atmospheric Corrosion Study in the Czech Republic. Materials 2017, 10(4), 394; doi:10.3390/ma10040394. http://www.mdpi.com/1996-1944/10/4/394 --- Alcántara, J.; Fuente, D.; Chico, B.; Simancas, J.; Díaz, I.; Morcillo, M. Marine Atmospheric Corrosion of Carbon Steel: A Review. Materials 2017, 10(4), 406; doi:10.3390/ma10040406. http://www.mdpi.com/1996-1944/10/4/406 --- Hosseinpour, S.; Johnson, M. Vibrational Spectroscopy in Studies of Atmospheric Corrosion. Materials 2017, 10(4), 413; doi:10.3390/ma10040413. http://www.mdpi.com/1996-1944/10/4/413 --- Panchenko, Y.; Marshakov, A. Prediction of First-Year Corrosion Losses of Carbon Steel and Zinc in Continental Regions. Materials 2017, 10(4), 422; doi:10.3390/ma10040422. http://www.mdpi.com/1996-1944/10/4/422 --- Chico, B.; de la Fuente, D.; Díaz, I.; Simancas, J.; Morcillo, M. Annual Atmospheric Corrosion of Carbon Steel Worldwide. An Integration of ISOCORRAG, ICP/UNECE and MICAT Databases. Materials 2017, 10(6), 601; doi:10.3390/ma10060601. http://www.mdpi.com/1996-1944/10/6/601 --- Bouchar, M.; Dillmann, P.; Neff, D. New Insights in the Long-Term Atmospheric Corrosion Mechanisms of Low Alloy Steel Reinforcements of Cultural Heritage Buildings. Materials 2017, 10(6), 670; doi:10.3390/ma10060670. http://www.mdpi.com/1996-1944/10/6/670 --- Tidblad, J.; Kreislová, K.; Faller, M.; de la Fuente, D.; Yates, T.; Verney-Carron, A.; Grøntoft, T.; Gordon, A.; Hans, U. ICP Materials Trends in Corrosion, Soiling and Air Pollution (1987–2014). Materials 2017, 10(8), 969; doi:10.3390/ma10080969. http://www.mdpi.com/1996-1944/10/8/969 --- Cole, I. Recent Progress and Required Developments in Atmospheric Corrosion of Galvanised Steel and Zinc. Materials 2017, 10(11), 1288; doi:10.3390/ma10111288. http://www.mdpi.com/1996-1944/10/11/1288
    Pages: Online-Ressource (X, 262 Seiten)
    Edition: Printed Edition of the Special Issue Published in Materials
    ISBN: 9783038426424
    Language: English
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  • 4
    Unknown
    Basel, Beijing, Wuhan : MDPI
    Keywords: earthquake engineering ; seismic vulnerability ; structural dynamics ; computational mechanics ; soil-structure interaction ; masonry buildings ; historic masonry ; r. c. buildings ; monitoring techniques
    Description / Table of Contents: Experimental Tests on a Dowel-Type Timber Connection and Validation of Numerical Models. Buildings 2017, 7(4), 116; https://doi.org/10.3390/buildings7040116 --- Multi-Directional Seismic Assessment of Historical Masonry Buildings by Means of Macro-Element Modelling: Application to a Building Damaged during the L’Aquila Earthquake (Italy). Buildings 2017, 7(4), 106; https://doi.org/10.3390/buildings7040106 --- Nonlinear Modelling of Curved Masonry Structures after Seismic Retrofit through FRP Reinforcing. Buildings 2017, 7(3), 79; https://doi.org/10.3390/buildings7030079 --- Assessment Method for Combined Structural and Energy Retrofitting in Masonry Buildings. Buildings 2017, 7(3), 71; https://doi.org/10.3390/buildings7030071 --- Rocking and Kinematic Approaches for Rigid Block Analysis of Masonry Walls: State of the Art and Recent Developments. Buildings 2017, 7(3), 69; https://doi.org/10.3390/buildings7030069 --- Effect of Material Variability and Mechanical Eccentricity on the Seismic Vulnerability Assessment of Reinforced Concrete Buildings. Buildings 2017, 7(3), 66; https://doi.org/10.3390/buildings7030066 --- Analysis of Cylindrical Granular Material Silos under Seismic Excitation. Buildings 2017, 7(3), 61; https://doi.org/10.3390/buildings7030061 --- Seismic Reinforcement of a R.C. School Structure with Strength Irregularities throughout External Bracing Walls. Buildings 2017, 7(3), 58; https://doi.org/10.3390/buildings7030058 --- The TVT Glass Pavilion: Theoretical Study on a Highly Transparent Building Made with Long-Spanned TVT Portals Braced with Hybrid Glass-Steel Panels. Buildings 2017, 7(2), 50; https://doi.org/10.3390/buildings7020050 --- Strengthening Masonry Arches with Lime-Based Mortar Composite. Buildings 2017, 7(2), 49; https://doi.org/10.3390/buildings7020049
    Pages: Online-Ressource (VI, 162 Seiten)
    Edition: Printed Edition of the Special Issue Published in Buildings
    ISBN: 9783038427483
    Language: English
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  • 5
    Description / Table of Contents: Die Region - mit den markanten Erhebungen des Hohen Meißners und des Thüringer Waldes - stellt geologisch und bergbaugeschichtlich einen Teil der deutschen Mittelgebirge dar, der Fachleute sowie Amateure und Naturfreunde gleichermaßen fasziniert. Die vorliegende Bibliographie versucht erstmals länderübergreifend die umfangreiche Fachliteratur der Dreiländer-Region zu erschließen. Dabei wurden sowohl fachwissenschaftliche als auch heimatkundliche Publikationen und unveröffentlichtes Material berücksichtigt.
    Pages: Online-Ressource (XX, 335 Seiten)
    ISBN: 9783940344021
    Language: German
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  • 6
    Unknown
    Warsaw, Berlin : De Gruyter Open
    Keywords: Naval Architecture ; Mechanics ; Control
    Description / Table of Contents: The propulsion system behaviour is a key aspect for the overall dynamics of a ship. However, despite its great importance, numerical methodologies for detailed investigations on marine propulsion dynamics are not yet widely covered in scientific literature. This book presents the main steps for the development of a multi-physic simulation platform, able to represent the motions of a twin screw ship in six degrees of freedom, taking into account the whole propulsion system and automation effects. A number of mathematical sub-models had been developed and calibrated by a set of experimental tests, in model and full scale. Finally, the sea trials campaign of a ship is used to validate and tune the developed simulator. The proposed simulation methodology can be used in the ship preliminary design phase, in order to plan and test the propulsion system and automation. Further applications can include the design optimization and crew training.
    Pages: Online-Ressource (VII, 104 Seiten)
    ISBN: 9783110401509
    Language: English
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  • 7
    Unknown
    Rijeka : InTech
    Keywords: mechanical engineering
    Description / Table of Contents: Chapter 1: Singular Lagrangians and Its Corresponding Hamiltonian Structures by Alvaro Restuccia and Adrián Sotomayor --- Chapter 2: Lagrangian Subspaces of Manifolds by Yang Liu --- Chapter 3: Topology and Integrability in Lagrangian Mechanics by Leo T. Butler --- Chapter 4: Closure Models for Lagrangian Gas Dynamics and Elastoplasticity Equations in Multimaterial Cells by Yury Yanilkin --- Chapter 5: Mechanics of Electric Rope Shovel Performance and Reliability in Formation Excavation by Muhammad Azeem Raza and Samuel Frimpong --- Chapter 6: Lagrangian Model-Based Fault Diagnosis in a PVTOL by César Martínez Torres, Luis Humberto Rodríguez Alfaro, Efrain Alcorta Garcia, Gerardo Romero Galvan and David Lara --- Chapter 7: Fuzzy Logic and S-Lagrangian Dynamics of Living Systems: Theory of Homeostasis by Uziel Sandler and Lev Tsitolovsky
    Pages: Online-Ressource (174 Seiten)
    ISBN: 9789535131328
    Language: English
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  • 8
    Keywords: sustainable manufacturing ; sustainable energy ; sustainability
    Description / Table of Contents: Chapter 1: Sustainable Solid Waste Recycling by Ahmad K. Jassim --- Chapter 2: Sustainable Power Technology: A Viable Sustainable Energy Solution by Kikelomo Ijagbemi --- Chapter 3: Sustainable Maintenance Practices and Skills for Competitive Production System by Adeyeri Michael Kanisuru --- Chapter 4: Interventions to Skills Development in the Automotive Manufacturing Sector of South Africa by Opeyeolu Timothy Laseinde and Grace Mukondeleli Kanakana --- Chapter 5: Designing and Developing New VET Curricula to Address Skills Gaps in the Aeronautics Industry by Rosa Maria Arnaldo Valdés, Victor Fernando Gómez Comendador and Alvaro Rodriguez Sanz
    Pages: Online-Ressource (102 Seiten)
    ISBN: 9789535136460
    Language: English
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  • 9
    Unknown
    Tokyo : TERRAPUB
    Keywords: shock compression ; fundamentals of shock wave propagation ; shock compression technology ; thermomechanics of powder compaction and mass mixing ; thermochemistry of heterogeneous mixtures ; hydrodynamical calculations ; shock conditioning and processing of ceramics
    Description / Table of Contents: INTRODUCTION --- Shock Compression Chemistry of materials, Y. Horie and A. B. Sawaoka, pp. 3-22 --- 1.1 The Nature of Shock Waves, pp. 3-5 --- 1.2 Compaction of Powders and Shock Activation, pp. 6-9 --- 1.3 First-Order Phase Transitions and Chemical Reactions, pp. 10-12 --- 1.4 Time Scales and Interactions of Basic Mechanisms, p. 12 --- 1.4.1 Shock propagation in a particle assemblage, p. 12 --- 1.4.2 Energy localization, pp. 12-13 --- 1.4.3 Thermal relaxation of hot spots, p. 14 --- 1.4.4 Mass diffusion in solids, p. 14 --- 1.4.5 Kinetic constants, pp. 14-16 --- 1.5 Some Roles of Shock Compression Techniques in Material Sciences Study, p. 16 --- 1.5.1 Shock compression technique as a tool of high pressure production, p. 16 --- 1.5.2 Appearance of diamond anvil-type high-pressure apparatus, pp. 16-18 --- 1.5.3 New roles of shock compression technology as a unique method of very high temperature production, pp. 18-19 --- 1.5.4 Development of conventional hypervelocity impact techniques for precise measurement of materials under shock compression, pp. 19-21 --- FUNDAMENTALS OF SHOCK WAVE PROPAGATION --- Shock Compression Chemistry of materials, Y. Horie and A. B. Sawaoka, pp. 23-78 --- 2.1 Hydrodynamic Jump Conditions and the Hugoniot Curve, pp. 23-32 --- 2.2 Shock Transition in Hydrodynamic Solids, pp. 32-42 --- 2.3 Non-Hydrostatic Deformation of Solids, p. 42 --- 2.3.1 Elastic-ideally-plastic solids, pp. 42-53 --- 2.3.2 Experimental observations of elastic-plastic behavior, pp. 53-56 --- 2.4 Wave-body interactions, pp. 56-57 --- 2.4.1 Preliminaries, pp. 57-60 --- 2.4.2 Planar impact of similar and dissimilar bodies, pp. 60-61 --- 2.4.3 Shock wave interaction with material boundaries, pp. 61-64 --- 2.4.4 Wave-wave interactions, pp. 65-66 --- 2.4.5 Detonation wave and interaction with a solid surface, pp. 66-77 --- SHOCK COMPRESSION TECHNOLOGY --- Shock Compression Chemistry of materials, Y. Horie and A. B. Sawaoka, pp. 79-115 --- 3.1 Gun Techniques, p. 80 --- 3.1.1 Single stage gun, p. 80 --- 3.1.2 Conventional two stage light gas gun, pp. 80-83 --- 3.1.3 Velocity measurement of projectile, p. 83 --- 3.1.4 Magnetoflyer method, pp. 83-84 --- 3.1.5 CW x-ray velocity meter, pp. 84-86 --- 3.1.6 Measurement of interior projectile motion, pp. 86-87 --- 3.1.7 Recovery experiments, pp. 87-89 --- 3.2 Explosive Techniques, p. 89 --- 3.2.1 Plane shock wave generation and recovery fixture, pp. 89-91 --- 3.2.2 Numerical simulaation of shock compression in the recovery capsule, pp. 91-94 --- 3.2.3 Cylindrical recovery fixture, pp. 94-95 --- 3.3 In-situ Measurements, p. 95 --- 3.3.1 Manganin pressure gauge, pp. 95-98 --- 3.3.2 Particle velocity gauge, pp. 99-100 --- 3.3.3 Observations of multiple shock reverberations by using a manganin pressure gauge and particle velocity gauge, pp. 100-106 --- 3.3.4 Shock temperature measurement, pp. 106-111 --- 3.3.5 Copper-Constantan thermocouple as a temperature and pressure gauge, pp. 111-113 --- THERMOMECHANICS OF POWDER COMPACTION AND MASS MIXING --- Shock Compression Chemistry of materials, Y. Horie and A. B. Sawaoka, pp. 117-170 --- 4.1 A One Dimensional Particulate Model, pp. 117-123 --- 4.2 Continuum Models, p. 123 --- 4.2.1 Hydrodynamic models, pp. 124-141 --- 4.2.2 Continuum plasticity theory, pp. 141-148 --- 4.2.3 Application, pp. 148-154 --- 4.3 Particle Bonding and Heterogeneous Processes, pp. 154-160 --- 4.4 Mass Mixing, pp. 160-169 --- THERMOCHEMISTRY OF HETEROGENEOUS MIXTURES --- Shock Compression Chemistry of materials, Y. Horie and A. B. Sawaoka, pp. 171-225 --- 5.1 Thermodynamic Functions of Heterogeneous Mixtures, pp. 172-187 --- 5.2 Analytical Equations of State, pp. 187-191 --- 5.3 Hugoniots of Inert Mixtures, p. 191 --- 5.3.1 Thermodynamically equilibrium models, pp. 191-197 --- 5.3.2 Mechanical models, pp. 197-199 --- 5.4 First-Order Phase Transitions, pp. 199-206 --- 5.5 Chemical Equilibria, pp. 206-212 --- 5.6 Reaction Kinetics, p. 212 --- 5.6.1 Rate equations, pp. 212-214 --- 5.6.2 Nucleation, pp. 214-216 --- 5.6.3 Growth, pp. 216-217 --- 5.6.4 Pressure effects, pp. 217-218 --- 5.7 Shock-Induced Reactions in Powder Mixtures, pp. 218-224 --- HYDRODYNAMICAL CALCULATIONS --- Shock Compression Chemistry of materials, Y. Horie and A. B. Sawaoka, pp. 227-276 --- 6.1 Conservation Equations of Continuum Flow, pp. 227-228 --- 6.1.1 Mass conservation, pp. 228-230 --- 6.1.2 Conservation of linear momentum, pp. 230-231 --- 6.1.3 Enegy conservation, pp. 231-234 --- 6.2 Constitutive Modeling of Inorganic Shock Chemistry, pp. 234-235 --- 6.2.1 VIR model, pp. 235-239 --- 6.2.2 Pore collapse, p. 239 --- 6.2.3 Chemical kinetics, pp. 239-240 --- 6.2.4 Computational constitutive reactions, pp. 240-245 --- 6.3 Applications of the VIR Model, p. 245 --- 6.3.1 Shock wave profiles in Ni/Al powder mixtures, pp. 245-250 --- 6.3.2 Compaction of diamond with Si and graphite, pp. 250-257 --- 6.4 Continuum Mixture Theory and the VIR Model, p. 257 --- 6.4.1 Continuum mixture theory, pp. 257-263 --- 6.4.2 Derivation of the VIR model using the CMT, pp. 263-269 --- 6.4.3 A model of heterogeneous flow, pp. 269-275 --- SHOCK CONDITIONING AND PROCESSING OF CERAMICS --- Shock Compression Chemistry of materials, Y. Horie and A. B. Sawaoka, pp. 277-360 --- 7.1 Shock Conditioning of Powder of Inorganic Materials, p. 227 --- 7.1.1 Brief review of shock conditioning studies, p. 227 --- 7.1.2 Aluminum oxide powder, pp. 277-281 --- 7.2 Shock Synthesis of Inorganic Materials, p. 281 --- 7.2.1 Shock synthesis studies, p. 281 --- 7.2.2 High dense forms of carbon, pp. 281-285 --- 7.2.3 High dense forms of boron nitride, pp. 285-287 --- 7.2.4 Shock treatment of boron nitride powders, pp. 287-301 --- 7.3 Shock Consolidation of Ceramic Powders, p. 301 --- 7.3.1 Why non-oxide ceramics?, pp. 301-302 --- 7.3.2 Dynamic consolidation of SiC powders, pp. 302-304 --- 7.3.3 Approach to the fabrication of crack free compacts, pp. 304-305 --- 7.3.4 Shock consolidation of SiC powder utilizing post shock heating by exothermic reaction, pp. 305-310 --- 7.4 Dynamic Compaction of Zinc Blende Type Boron Nitride and Diamond Powders, p. 310 --- 7.4.1 Background, pp. 310-311 --- 7.4.2 Cubic boron nitride, pp. 311-318 --- 7.4.3 Diamond, pp. 318-326 --- 7.4.4 Diamond composites obtained by utilizzing exothermic chemical reaction, pp. 326-332 --- 7.5 Very High Pressure Sintering of Shock Treated Powders, pp. 332-334 --- 7.5.1 Silicon nitride, pp. 334-336 --- 7.5.2 w-BN, pp. 336-346 --- 7.6 Rapid Condensation of High Temperature Ultrasupersaturated Gas, p. 346 --- 7.6.1 Silicon nitride, pp. 346-352 --- 7.6.2 Carbon, pp. 352-357
    Pages: Online-Ressource (VI, 364 Seiten)
    ISBN: 4876771073
    Language: English
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  • 10
    Description / Table of Contents: Die Region - mit den markanten Erhebungen des Hohen Meißners und des Thüringer Waldes - stellt geologisch und bergbaugeschichtlich einen Teil der deutschen Mittelgebirge dar, der Fachleute sowie Amateure und Naturfreunde gleichermaßen fasziniert. Die vorliegende Bibliographie versucht erstmals länderübergreifend die umfangreiche Fachliteratur der Dreiländer-Region zu erschließen. Dabei wurden sowohl fachwissenschaftliche als auch heimatkundliche Publikationen und unveröffentlichtes Material berücksichtigt.
    Pages: Online-Ressource (XXII, 506 Seiten)
    ISBN: 9783940344038
    Language: German
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