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Materials --- Impact. --- Dynamic testing.
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Shock waves. --- Shock (Mechanics) --- Waves --- Materials --- Dynamic testing. --- Dynamic loading (Materials) --- Loading, Dynamic (Materials) --- Loads, Dynamic (Materials) --- Dynamic testing --- Testing
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The European Structural Integrity Society (ESIS) Technical Commitee on Fatigue of Engineering Materials and Structures (TC3) decided to compile a Special Technical Publication (ESIS STP) based on the 115 papers presented at the 6th International Conference on Biaxial/Multiaxial Fatigue and Fracture. The 25 papers included in the STP have been extended and revised by the authors. The conference was held in Lisbon, Portugal, on 25-28 June 2001, and was chaired by Manual De Freitas, Instituto Superior Tecnico, Lisbon. The meeting, organised by the Instituto Superior Tecnico and sponsored by the P
Engineering --- Civil Engineering --- Materials --- Dynamic loading (Materials) --- Loading, Dynamic (Materials) --- Loads, Dynamic (Materials) --- Dynamic testing --- Fatigue --- Dynamic testing. --- Testing
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Impact --- Materials --- Research. --- Testing. --- Collisions (Physics) --- Blast effect --- Shock (Mechanics) --- Splashes --- Dynamic testing
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Dr Theodore Nicholas ran the High Cycle Fatigue Program for the US Air Force between 1995 and 2003 at Wright-Patterson Air Force Base, and is one of the world's leading authorities on the subject, having authored over 250 papers in leading archival journals and books. Bringing his plethora of expertise to this book, Dr Nicholas discusses the subject of high cycle fatigue (HCF) from an engineering viewpoint in response to a series of HCF failures in the USAF and the concurrent realization that HCF failures in general were taking place universally in both civilian and military engines. T
Materials --- Fatigue. --- Dynamic testing. --- Dynamic loading (Materials) --- Loading, Dynamic (Materials) --- Loads, Dynamic (Materials) --- Dynamic testing --- Fatigue of materials --- Fatigue testing --- Fracture mechanics --- Strains and stresses --- Strength of materials --- Structural failures --- Vibration --- Testing --- Engineering --- Mechanical Engineering
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Machine component wear is one of the costliest problems within industry. In fact, a 1997 survey in the UK placed wear costs at 25% of turnover, or approximately 1 billion. In many cases, making design and or material changes can reduce this cost by 50% or more! This handbook reviews component wear, and guides the reader through solutions to wear problems, testing methods for materials and wear mechanisms, and information on wear performance of different materials for components. The bottom line is that it helps to reduce """"the bottom line"""" removing risks associated with changes t
Mechanical wear. --- Machinery --- Testing. --- Scuffing --- Wear, Mechanical --- Wearing properties --- Friction --- Materials --- Strength of materials --- Tribology --- Hard materials --- Dynamic testing
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"The International journal of impact engineering exists for the publication of original research work concerned with the response of structures and bodies to dynamic loads arising from exposure to blast, collision or other impact events. The topics encompassed by the journal include the elastic and plastic response of structures and bodies to impact and blast loading, terminal ballistics, vehicle crashworthiness, containment and other processes and phenomena in which effects due to impact predominate, such as explosive welding. In addition, related matters such as research into fire hazards in association with impact loads will be included. Every paper accepted for publication is strictly refereed and assessed for its contribution to the understanding of impact phenomena or the insight gained for engineering design in areas of high rate loading."
Impact --- Shock (Mechanics) --- Choc (Mécanique) --- Périodiques. --- Mechanical shock --- Damping (Mechanics) --- Mechanics --- Strains and stresses --- Vibration --- Collisions (Physics) --- Materials --- Blast effect --- Splashes --- Dynamic testing
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This new book will be useful not only to practising engineers and scientists, but also to advanced students interested in wear. It reviews our current understanding of the influence of microstructural elements and physical properties of materials (metals, polymers, ceramics and composites) on wear.The introductory chapters describe the relation between microstructure and mechanical properties of materials, surfaces in contact and the classification of wear processes. The following chapters are concerned with wear modes of great practical interest such as grooving wear, sliding wear,
Materials --- Microstructure. --- Mechanical wear. --- Tribology. --- Testing. --- Friction --- Surfaces (Technology) --- Scuffing --- Wear, Mechanical --- Wearing properties --- Strength of materials --- Tribology --- Hard materials --- Matter --- Morphology --- Micromechanics --- Stereology --- Dynamic testing --- Constitution
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Materials --- Mechanical wear. --- Fatigue --- Testing. --- Scuffing --- Wear, Mechanical --- Wearing properties --- Friction --- Strength of materials --- Tribology --- Hard materials --- Engineering --- Engineering materials --- Industrial materials --- Engineering design --- Manufacturing processes --- Dynamic testing
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