Engineering Materials in Extreme Environments
Materialtyp:
ArtikelUtgivningsinformation: MDPI - Multidisciplinary Digital Publishing Institute 2025Beskrivning: 1 electronic resource (182 p.)Innehållstyp: - text
- computer
- online resource
- 9783725839155
- 9783725839162
- Technology, Engineering, Agriculture, Industrial processes
- Technology: general issues
- History of engineering and technology
- CFD simulation
- CiADSvessel
- FeCrAl weld overlay
- Fourier-transform infrared spectroscopy
- absorption
- accelerator-driven system
- activation energy of degradation
- antenna baffle
- austenitic stainless steel plate
- bubble
- carbon nanotubes
- condensation heat transfer
- controllable bonded prestressed concrete
- crack growth simulation
- crack propagation
- crosslink fraction
- cutterhead
- electrodes
- electrothermal method
- enhanced tube
- environmental stress cracking
- ethylene-propylene-diene monomer
- experimental verification
- extraction column
- failure analysis
- finite element analysis
- fracture
- functionally graded materials
- hardness
- heat transfer coefficient
- heavy liquid metal
- integral equivalence
- life prediction
- lithium-ion batteries
- mechanical tests
- methyl methacrylate
- numerical simulation
- peridynamic method
- peridynamics
- plasma spraying
- polyurethane rubber
- pressure drop
- safety design
- silicon thin films
- stress intensity factor
- structural composites
- temperature field
- two-phase flow
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This Special Issue, entitled "Engineering Materials in Extreme Environments", aims to gather cutting-edge research and provide a comprehensive overview of the structures, properties, processing, and performance of engineering materials in extreme environments. By bringing together experts from various fields, it seeks to advance the understanding of material behaviors under extreme conditions and promote the development of new materials and technologies that can withstand these challenges.The 11 peer-reviewed papers published in this Special Issue cover a wide range of topics, from fundamental research on material properties to practical studies on component performance in specific industries. These papers include experimental investigations, numerical simulations, and failure analysis case studies of engineering equipment/materials in extreme environments and demonstrate the practical applications of these materials and provide valuable insights into material science and engineering.We believe that this Special Issue will serve as a valuable resource for researchers, engineers, and students working in the field of engineering materials in extreme environments. It will provide a foundation for future research and development efforts aimed at improving the performance and reliability of materials in demanding applications. We hope that this collection will inspire further innovation and collaboration in this critical area.
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eng
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