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| 999 |
_c94947 _d94947 |
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| 001 | 94947 | ||
| 003 | ES-MaUEC | ||
| 005 | 20230102112639.0 | ||
| 006 | m o d | ||
| 007 | cr |n||||||||| | ||
| 008 | 161117t20162017sz ob 000 0 eng d | ||
| 020 |
_a331929962X _q(electronic book) |
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| 020 |
_a9783319299624 _q(electronic book) |
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| 020 | _z3319299611 | ||
| 020 | _z9783319299617 | ||
| 035 |
_a(OCoLC)964554576 _z(OCoLC)962750989 _z(OCoLC)962833131 _z(OCoLC)963748157 |
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| 040 |
_aYDX _cYDX _dOCLCQ _dOCLCO _dN$T _dIDEBK _dEBLCP _dGW5XE _dOCLCF _dIDB _dAZU _dUAB _dIOG _dESU _dZ5A _dJBG _dIAD _dICW _dICN _dOTZ _dOCLCQ _dMERER _dOCLCQ _dU3W _dMERUC _dES-MaUEC _bspa |
||
| 050 | 4 |
_aTP156.C57 _b2016 EB |
|
| 100 | 1 |
_aMoridi, Atieh, _eautor |
|
| 245 | 1 | 0 |
_aPowder consolidation using cold spray : _bprocess modeling and emerging applications _cAtieh Moridi. |
| 264 | 1 |
_aCham, Switzerland _bSpringer _c[2016] |
|
| 264 | 4 | _c2017 | |
| 300 | _a1 recurso en línea | ||
| 336 |
_aTexto _btxt _2rdacontent |
||
| 337 |
_aelectrónico _bc _2rdamedia |
||
| 338 |
_arecurso electrónico _bcr _2rdacarrier |
||
| 490 | 0 |
_aSpringerBriefs in applied sciences and technology, PoliMI SpringerBriefs _x2191-530X |
|
| 500 | _aSpringerLink | ||
| 504 | _aIncluye referencias bibliográficas | ||
| 505 | 0 | _aPreface; Acknowledgments; Contents; Nomenclature; 1 Introduction; 1.1 Cold Spray Coating-Basic Principals; 1.2 Cold Spray Apparatus; 1.3 Materials for Cold Spray; 1.3.1 Metals; 1.3.2 Metal Matrix Composites; 1.3.3 Ceramics; 1.3.4 Polymers; 1.3.5 Nanostructured Powders; 1.3.6 Path Forward; References; 2 Experiments; 2.1 Surface Treatment; 2.1.1 Cold Spray Coating; 2.1.2 Shot Peening; 2.2 Characterization; 2.2.1 Micro-Structural Observation; 2.2.2 Hardness; 2.2.3 XRD Measurement of Residual Stress; 2.2.4 Roughness Measurement; 2.2.5 Fatigue Test. | |
| 505 | 8 | _a2.2.6 Bond Strength and Tubular Coating Tensile Test2.2.7 Contact Angle Measurement; References; 3 Modeling Cold Spray; 3.1 Impact Phenomenon: Lagrangian Approach; 3.1.1 Background; 3.1.2 Concluding Remarks; 3.2 Impact Phenomenon: Hybrid Lagrangian-Analytical Approach; 3.2.1 Analytical Model; 3.2.2 Finite Element Simulation; 3.2.3 Calculating Critical and Erosion Velocities; 3.2.4 Results and Discussion; 3.2.5 Concluding Remarks; 3.3 Eulerian Simulation; 3.3.1 Fundamental Assumption; 3.3.2 Eulerian Model, Initial and Boundary Conditions; 3.3.3 Material Behavior. | |
| 505 | 8 | _a3.3.4 General Deformation Behavior3.3.5 Plastic Strain; 3.3.6 Temperature; 3.3.7 Material Flow Velocity; 3.3.8 Discussion; 3.3.9 Concluding Remarks; 3.4 Damage Based Simulation of Consolidated Coating; 3.4.1 Indentation Across Size Scales; 3.4.2 Finite Element Model of Consolidated Coating; 3.4.3 Results and Discussion; 3.4.4 Concluding Remarks; References; 4 Applications; 4.1 Repair; 4.1.1 Cavity Filling Using Cold Spray; 4.1.2 Fatigue Behavior for Structural Applications; 4.1.3 Hybrid Treatment for Fatigue Life Enhancement; 4.2 Additive Manufacturing. | |
| 505 | 8 | _a4.2.1 Cold Spray, a Low Temperature, Solid State, Additive Manufacturing Process4.2.2 Challenges; 4.2.3 Concluding Remarks; 4.3 Porous Coating/Cellular Structure by Subcritical Cold Spray; 4.3.1 New Deposition Window for Cold Spray; 4.3.2 Materials and Methods; 4.3.3 Microscopic Observation; 4.3.4 Cohesion Strength and Fracture Analysis; 4.3.5 Surface Characterization; 4.3.6 Concluding Remarks; 4.4 Cold Spray to Mitigate Corrosion; 4.4.1 Deposition Temperature and Pressure; 4.4.2 Particle Size and Coating Thickness; 4.4.3 Carrier Gas; 4.4.4 Post Treatment. | |
| 505 | 8 | _a4.4.5 Co-Deposition of Metals/Alloys with Ceramics/Intermetallics4.4.6 Path Forward; References. | |
| 520 | 3 | _aThis book first presents different approaches to modeling of the cold spray process with the aim of extending current understanding of its fundamental principles and then describes emerging applications of cold spray. In the coverage of modeling, careful attention is devoted to the assessment of critical and erosion velocities. In order to reveal the phenomenological characteristics of interface bonding, severe, localized plastic deformation and material jet formation are studied. Detailed consideration is also given to the effect of macroscopic defects such as interparticle boundaries and subsequent splat boundary cracking on the mechanical behavior of cold spray coatings. The discussion of applications focuses in particular on the repair of damaged parts and additive manufacturing in various disciplines from aerospace to biomedical engineering. Key aspects include a systematic study of defect shape and the ability of cold spray to fill the defect, examination of the fatigue behavior of coatings for structural applications, and a novel working window at subcritical conditions to obtain porous structures. This book is exceptional in scope, and its review of finite element modelling at different length scales sheds light on future design and process improvement in emerging applications such as structural repair, metal additive manufacturing and metal foam design. | |
| 988 | _aEBOOK, asignarmaterias, EBSPRINGER_2017B | ||
| 650 | 7 |
_aIngeniería química _2embne _0(OCoLC)fst00865852 _9492897 |
|
| 856 | 4 | 0 |
_uhttps://go.openathens.net/redirector/universidadeuropea.es?url=http://link.springer.com/10.1007/978-3-319-29962-4 _zAcceso a este recurso digital (usuarios Universidad Europea de Madrid) |
| 942 |
_2lcc _cLE |
||
| 998 |
_b02/2018 _dz _e- _zSI |
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