Journal of thermal spray technology |
Pubbl/distr/stampa | [Materials Park, OH], : ASM International |
Disciplina | 671.7 |
Soggetto topico |
Metal spraying
Plasma spraying Métallisation au pistolet Projection au plasma |
ISSN | 1544-1016 |
Formato | Materiale a stampa |
Livello bibliografico | Periodico |
Lingua di pubblicazione | eng |
Record Nr. | UNISA-996204673203316 |
[Materials Park, OH], : ASM International | ||
Materiale a stampa | ||
Lo trovi qui: Univ. di Salerno | ||
|
Journal of thermal spray technology |
Pubbl/distr/stampa | [Materials Park, OH], : ASM International |
Disciplina | 671.7 |
Soggetto topico |
Metal spraying
Plasma spraying Métallisation au pistolet Projection au plasma |
ISSN | 1544-1016 |
Formato | Materiale a stampa |
Livello bibliografico | Periodico |
Lingua di pubblicazione | eng |
Record Nr. | UNINA-9910144309203321 |
[Materials Park, OH], : ASM International | ||
Materiale a stampa | ||
Lo trovi qui: Univ. Federico II | ||
|
Practical cold spray / / Victor Kenneth Champagne Jr., Ozan Cagatay Ozdemir, Aaron Nardi, editors |
Pubbl/distr/stampa | Cham, Switzerland : , : Springer, , [2021] |
Descrizione fisica | 1 online resource (445 pages) |
Disciplina | 660.283 |
Soggetto topico | Metal spraying |
ISBN | 3-030-70056-9 |
Formato | Materiale a stampa |
Livello bibliografico | Monografia |
Lingua di pubblicazione | eng |
Nota di contenuto |
Intro -- Preface -- Contents -- 1 Introduction -- 1.1 Process Description -- 1.2 Comparison to Thermal Spray -- 1.3 Advantages and Limitations -- 1.3.1 Strength -- 1.3.2 Hardness -- 1.3.3 Variety of Feedstock Powders -- 1.3.4 Cost -- 1.3.5 Ease of Production and Portability -- 1.3.6 Additive Manufacturing -- 1.4 Summary of Advantages and Limitations -- 1.4.1 Advantages -- 1.4.2 Limitations -- References -- 2 Process Description -- 2.1 Introduction -- 2.2 Cold Spray Process -- 2.3 System Classification -- 2.3.1 Classifying Cold Spray Systems According to the Mode of Operation -- 2.3.2 Classifying Cold Spray Systems According to Powder Feeding and Acceleration Mechanism -- 2.4 Supersonic and Sonic Nozzle Description -- 2.5 Cold Spray Powders -- 2.6 The Deposition Process -- 2.7 Powder and Substrate Hardness -- 2.8 Deposition Efficiency -- 2.9 Deposition Path -- 2.10 Nozzle Materials -- 2.11 Fundamentals of Cold Spray Process -- 2.11.1 Gas Flow in Cold Spray -- 2.12 Particle Flow Behavior -- 2.12.1 Particle Velocity -- 2.12.2 Particle Heat Transfer -- 2.13 Bonding Mechanism -- References -- 3 Setting Up a Cold Spray Facility -- 3.1 Introduction -- 3.2 Cold Spray Unit -- 3.3 Gas Supply -- 3.3.1 Nitrogen -- 3.3.2 Helium -- 3.4 Powder and Gas Control -- 3.5 Ventilation and Dust Control -- 3.6 Acoustic Enclosure -- 3.7 Robotic Motion Control -- 3.8 Equipment Placement -- 3.9 Safety -- 3.9.1 Environmental Safety -- 3.9.2 Solid Powders -- 3.9.3 Inert Gases -- 3.9.4 High Pressure Gases -- 3.9.5 Hearing Hazards -- 3.9.6 Hot Surfaces -- 3.9.7 Flying Objects -- 3.9.8 Robot Safety -- 3.9.9 Maintenance of Safety Systems and PPE -- 3.9.10 Fire/Explosion Safety -- 3.10 Auxiliary Equipment -- 3.11 Summary of Equipment -- References -- 4 Feedstock Powders -- 4.1 Significance of Powder Microstructure in Cold Spray.
4.2 Correlation Between Powder and Deposit Microstructures -- 4.2.1 Microstructural Phases in Powders and Deposits -- 4.2.2 Grain Size in Powder and Deposits -- 4.2.3 Relationship of Deformation with Inter-Particle Bonding -- 4.3 Introduction to Powder Basics -- 4.3.1 Size Distribution -- 4.3.2 Powder Flowability -- 4.3.3 Morphology -- 4.3.4 Hardness -- 4.3.5 Adsorbed Moisture (Flow and Degas During AM) -- 4.4 Desirable Powder Characteristics -- 4.4.1 Surface (Oxides, Hydroxides) -- 4.4.2 Interior (Homogenization, Phase Transformations) -- 4.5 Processing Required to Achieve Desirable Powder -- 4.5.1 Heat Treatment -- 4.5.2 Size Classification -- 4.6 Multi-phase Powders -- 4.7 Concluding Remarks -- References -- 5 Material Properties -- 5.1 Aluminum -- 5.1.1 Aluminum Properties -- 5.2 Brass and Bronze -- 5.3 Copper -- 5.3.1 Copper Properties -- 5.3.2 Alloys of Copper -- 5.3.3 Cold Spray Copper -- 5.4 Titanium -- 5.4.1 Titanium -- 5.4.2 Uses -- 5.4.3 Cold Spray Titanium -- 5.5 Stainless Steel -- 5.5.1 Stainless Steel Uses -- 5.5.2 Cold Spray Stainless Steel -- 5.6 Nickel -- 5.6.1 Nickel Properties and Common Use -- 5.6.2 Cold Spray Nickel -- 5.7 Tantalum -- 5.7.1 Tantalum Properties and Common Use -- 5.7.2 Cold Spray of Tantalum -- 5.8 Alloys for Replacing Chrome and Nickle Electroplating -- 5.8.1 Electroplated Cr and Ni Replacement Powders -- 5.9 Inconel -- 5.10 Polymers and Composites -- References -- 6 Application, Qualification, and Standardization of Cold Spray -- 6.1 Introduction -- 6.2 Identification of Applicable Standards, Governing Bodies, and Approval Authorities -- 6.3 Standards and Guidelines Applicable to Cold Spray -- 6.3.1 Powder Specification Standards -- 6.3.2 Applicable Cold Spray Standards -- 6.3.3 Applicable Thermal Spray Standards -- 6.4 Writing New Standards -- 6.4.1 Having a Controlled and Bounded Process. 6.4.2 Acceptable Versus Unacceptable Variation -- 6.4.3 Evaluating Process Variation Versus Property Variation -- 6.4.4 Testing -- 6.4.5 Obtaining Stakeholder Involvement -- 6.4.6 Funding the Qualification Effort -- 6.5 Quality Testing -- 6.5.1 Impact Testing -- 6.5.2 Microscopic Examination -- 6.5.3 Adhesion Tensile Bond Strength -- 6.5.4 ARL 'Glueless' Bond Strength Test -- 6.5.5 Triple Lug Shear Adhesion -- 6.5.6 Tensile Testing -- 6.5.7 Fretting Fatigue -- 6.5.8 Corrosion Testing -- 6.6 Nondestructive Evaluation of Cold Spray Deposited Products -- 6.6.1 Ultrasonic Testing -- 6.6.2 Acoustic Emissions Testing -- 6.6.3 Eddy Current Testing -- 6.6.4 Dye Penetrant Testing -- 6.6.5 Magnetic Particle Testing -- 6.6.6 Radioscopy -- 6.6.7 Visual-Optical -- 6.7 Troubleshooting -- 6.7.1 Cold Spray Process Related Problems -- 6.7.2 Leaks, Clogs, and Nozzle Wear -- 6.7.3 Component Failures -- 6.8 Example of Cold Spray Procedure Qualification -- 6.8.1 Project Structure -- 6.8.2 Development of a Joint Test Protocol (JTP) -- 6.9 Summary -- References -- 7 Process Control -- 7.1 Introduction -- 7.2 Surface Preparation -- 7.3 Basic Parameters -- 7.3.1 Gas Conditions -- 7.3.2 Particle Velocity and Temperature Determination -- 7.3.3 The Critical Velocity -- 7.3.4 Gas and Powder Flow Rates -- 7.4 Application Setup -- 7.5 In Situ Process Analysis -- 7.5.1 In Situ Particle Velocity Measurement -- 7.5.2 In Situ Coating Property Sensing -- 7.6 Summary -- References -- 8 Cold Spray Economics -- 8.1 Introduction -- 8.2 Basic Framework -- 8.3 Powders -- 8.4 Gas -- 8.5 Powder Mass Loading -- 8.6 Direct Labor Costs -- 8.7 Overhead -- 8.8 Depreciation and Capital Recovery -- 8.9 Examples of Cost Calculations -- 8.10 Effects of Process Variables -- 8.10.1 Gas -- 8.10.2 Powder Feed -- 8.10.3 Powder Cost -- 8.10.4 Deposition Efficiency -- 8.10.5 Utilization. 8.10.6 Number of Pieces to Be Produced -- 8.11 Determination of Operating Parameters -- 8.12 Production Capacity -- 8.13 Important Factors in Determining the Viability of a Cold Spray Repair -- 8.14 Concluding Thoughts -- References -- 9 Advancements in Cold Spray -- 9.1 Introduction -- 9.2 Intelligent Process Control -- 9.2.1 Machine Learning -- 9.2.2 High Rate Cold Spray Manufacturing -- 9.2.3 Laser-Assisted Cold Spray -- 9.3 Advanced Cold Spray Materials -- 9.3.1 Aluminum and Aluminum Alloys -- 9.3.2 Chrome Plating Replacement -- 9.3.3 Composite Materials -- 9.3.4 Polymer Applications -- 9.4 Joining of Dissimilar Materials -- 9.4.1 Importance of Magnesium -- 9.4.2 Practicality and Advantages of Cold Spray -- 9.4.3 Joining of Aluminum to Magnesium -- 9.4.4 Applications of Joining Aluminum to Magnesium -- 9.4.5 Testing Joint Integrity -- 9.4.6 Discussion -- 9.5 3D Additive Manufacturing -- 9.5.1 Conforming Material onto a Substrate -- 9.5.2 Additive and Subtractive Manufacturing -- 9.5.3 Freeform Manufacturing -- 9.5.4 Challenges in Cold Spray 3D Additive Manufacturing -- 9.6 Cold Spray System Developments Driven by Application -- 9.6.1 Capillary Cold Spray -- 9.6.2 Nozzle Design -- 9.6.3 On-Demand Field Repair and Portability -- 9.7 Advanced Cold Spray Facilities -- 9.7.1 Multi-Axis and Multi-Process Integrated Repair and Manufacturing Cell Concept -- 9.7.2 Cold Spray Repair and Rebuild Technology Cell (CSRRT Cell) -- 9.7.3 Hybrid Cold Spray Manufacturing and Repair Cell -- 9.7.4 Helium Automated Repair and Recovery and Repair Manufacturing System (CS-HARRPS) -- References -- 10 Applications -- 10.1 Introduction -- 10.2 Aerospace -- 10.2.1 Repair of Magnesium Aircraft Parts -- 10.2.2 Miscellaneous Aerospace Applications -- 10.2.3 Repair of B1 Bomber Forward Equipment Bay (FEB) Panels -- 10.2.4 B1 Bomber Hydraulic Lines. 10.2.5 AH-64 Static Mast Support -- 10.2.6 Residual Stress -- 10.2.7 T-700 Engine Front Frame -- 10.2.8 Landing Gear -- 10.3 Naval -- 10.3.1 Pump Housing -- 10.3.2 Flo-Tork Actuator -- 10.3.3 Cone Assembly -- 10.3.4 Periscope -- 10.4 Automotive -- 10.4.1 Insulated Gate Bipolar Transistor (IGBT) Baseplates -- 10.4.2 Selective Galvanizing and Corrosion Protection of Trim -- 10.4.3 Engine Block Repair -- 10.5 Electronics -- 10.5.1 Electromagnetic Shielding -- 10.5.2 Thermal Management -- 10.6 Medical -- 10.6.1 Antimicrobial Coatings -- 10.7 Additive Manufactured Cold Spray Parts -- References. |
Record Nr. | UNINA-9910485599703321 |
Cham, Switzerland : , : Springer, , [2021] | ||
Materiale a stampa | ||
Lo trovi qui: Univ. Federico II | ||
|
The science and engineering of thermal spray coatings / / Lech Pawlowski |
Autore | Pawowski Lech |
Edizione | [2nd ed.] |
Pubbl/distr/stampa | Chichester, England ; ; Hoboken, NJ, : Wiley, c2008 |
Descrizione fisica | 1 online resource (658 p.) |
Disciplina | 667/.9 |
Soggetto topico | Metal spraying |
ISBN |
1-282-12376-9
9786612123764 0-470-75408-7 1-61583-599-7 0-470-75407-9 |
Formato | Materiale a stampa |
Livello bibliografico | Monografia |
Lingua di pubblicazione | eng |
Nota di contenuto |
The Science and Engineering of Thermal Spray Coatings; Contents; Preface to the Second Edition; Preface to the First Edition; Acronyms, Abbreviations and Symbols; 1 Materials Used for Spraying; 1.1 Methods of Powders Production; 1.1.1 Atomization; 1.1.2 Sintering or Fusion; 1.1.3 Spray Drying (Agglomeration); 1.1.4 Cladding; 1.1.5 Mechanical Alloying (Mechanofusion); 1.1.6 Self-propagating High-temperature Synthesis (SHS); 1.1.7 Other Methods; 1.2 Methods of Powders Characterization; 1.2.1 Grain Size; 1.2.2 Chemical and Phase Composition; 1.2.3 Internal and External Morphology
1.2.4 High-temperature Behaviour1.2.5 Apparent Density and Flowability; 1.3 Feeding, Transport and Injection of Powders; 1.3.1 Powder Feeders; 1.3.2 Transport of Powders; 1.3.3 Injection of Powders; References; 2 Pre-Spray Treatment; 2.1 Introduction; 2.2 Surface Cleaning; 2.3 Substrate Shaping; 2.4 Surface Activation; 2.5 Masking; References; 3 Thermal Spraying Techniques; 3.1 Introduction; 3.2 Flame Spraying (FS); 3.2.1 History; 3.2.2 Principles; 3.2.3 Process Parameters; 3.2.4 Coating Properties; 3.3 Atmospheric Plasma Spraying (APS); 3.3.1 History; 3.3.2 Principles 3.3.3 Process Parameters3.3.4 Coating Properties; 3.4 Arc Spraying (AS); 3.4.1 Principles; 3.4.2 Process Parameters; 3.4.3 Coating Properties; 3.5 Detonation-Gun Spraying (D-GUN); 3.5.1 History; 3.5.2 Principles; 3.5.3 Process Parameters; 3.5.4 Coating Properties; 3.6 High-Velocity Oxy-Fuel (HVOF) Spraying; 3.6.1 History; 3.6.2 Principles; 3.6.3 Process Parameters; 3.6.4 Coating Properties; 3.7 Vacuum Plasma Spraying (VPS); 3.7.1 History; 3.7.2 Principles; 3.7.3 Process Parameters; 3.7.4 Coating Properties; 3.8 Controlled-Atmosphere Plasma Spraying (CAPS); 3.8.1 History; 3.8.2 Principles 3.8.3 Process Parameters3.8.4 Coating Properties; 3.9 Cold-Gas Spraying Method (CGSM); 3.9.1 History; 3.9.2 Principles; 3.9.3 Process Parameters; 3.9.4 Coating Properties; 3.10 New Developments in Thermal Spray Techniques; References; 4 Post-Spray Treatment; 4.1 Heat Treatment; 4.1.1 Electromagnetic Treatment; 4.1.2 Furnace Treatment; 4.1.3 Hot Isostatic Pressing (HIP); 4.1.4 Combustion Flame Re-melting; 4.2 Impregnation; 4.2.1 Inorganic Sealants; 4.2.2 Organic Sealants; 4.3 Finishing; 4.3.1 Grinding; 4.3.2 Polishing and Lapping; References; 5 Physics and Chemistry of Thermal Spraying 5.1 Jets and Flames5.1.1 Properties of Jets and Flames; 5.2 Momentum Transfer between Jets or Flames and Sprayed Particles; 5.2.1 Theoretical Description; 5.2.2 Experimental Determination of Sprayed Particles' Velocities; 5.2.3 Examples of Experimental Determination of Particles Velocities; 5.3 Heat Transfer between Jets or Flames and Sprayed Particles; 5.3.1 Theoretical Description; 5.3.2 Methods of Particles' Temperature Measurements; 5.4 Chemical Modification at Flight of Sprayed Particles; References; 6 Coating Build-Up; 6.1 Impact of Particles; 6.1.1 Particle Deformation 6.1.2 Particle Temperature at Impact |
Record Nr. | UNINA-9910877052103321 |
Pawowski Lech | ||
Chichester, England ; ; Hoboken, NJ, : Wiley, c2008 | ||
Materiale a stampa | ||
Lo trovi qui: Univ. Federico II | ||
|
The science and engineering of thermal spray coatings [[electronic resource] /] / Lech Pawlowski |
Autore | Pawłowski Lech |
Edizione | [2nd ed.] |
Pubbl/distr/stampa | Chichester, England ; ; Hoboken, NJ, : Wiley, c2008 |
Descrizione fisica | 1 online resource (658 p.) |
Disciplina |
667.9
667/.9 |
Soggetto topico | Metal spraying |
Soggetto genere / forma | Electronic books. |
ISBN |
1-282-12376-9
9786612123764 0-470-75408-7 1-61583-599-7 0-470-75407-9 |
Formato | Materiale a stampa |
Livello bibliografico | Monografia |
Lingua di pubblicazione | eng |
Nota di contenuto |
The Science and Engineering of Thermal Spray Coatings; Contents; Preface to the Second Edition; Preface to the First Edition; Acronyms, Abbreviations and Symbols; 1 Materials Used for Spraying; 1.1 Methods of Powders Production; 1.1.1 Atomization; 1.1.2 Sintering or Fusion; 1.1.3 Spray Drying (Agglomeration); 1.1.4 Cladding; 1.1.5 Mechanical Alloying (Mechanofusion); 1.1.6 Self-propagating High-temperature Synthesis (SHS); 1.1.7 Other Methods; 1.2 Methods of Powders Characterization; 1.2.1 Grain Size; 1.2.2 Chemical and Phase Composition; 1.2.3 Internal and External Morphology
1.2.4 High-temperature Behaviour1.2.5 Apparent Density and Flowability; 1.3 Feeding, Transport and Injection of Powders; 1.3.1 Powder Feeders; 1.3.2 Transport of Powders; 1.3.3 Injection of Powders; References; 2 Pre-Spray Treatment; 2.1 Introduction; 2.2 Surface Cleaning; 2.3 Substrate Shaping; 2.4 Surface Activation; 2.5 Masking; References; 3 Thermal Spraying Techniques; 3.1 Introduction; 3.2 Flame Spraying (FS); 3.2.1 History; 3.2.2 Principles; 3.2.3 Process Parameters; 3.2.4 Coating Properties; 3.3 Atmospheric Plasma Spraying (APS); 3.3.1 History; 3.3.2 Principles 3.3.3 Process Parameters3.3.4 Coating Properties; 3.4 Arc Spraying (AS); 3.4.1 Principles; 3.4.2 Process Parameters; 3.4.3 Coating Properties; 3.5 Detonation-Gun Spraying (D-GUN); 3.5.1 History; 3.5.2 Principles; 3.5.3 Process Parameters; 3.5.4 Coating Properties; 3.6 High-Velocity Oxy-Fuel (HVOF) Spraying; 3.6.1 History; 3.6.2 Principles; 3.6.3 Process Parameters; 3.6.4 Coating Properties; 3.7 Vacuum Plasma Spraying (VPS); 3.7.1 History; 3.7.2 Principles; 3.7.3 Process Parameters; 3.7.4 Coating Properties; 3.8 Controlled-Atmosphere Plasma Spraying (CAPS); 3.8.1 History; 3.8.2 Principles 3.8.3 Process Parameters3.8.4 Coating Properties; 3.9 Cold-Gas Spraying Method (CGSM); 3.9.1 History; 3.9.2 Principles; 3.9.3 Process Parameters; 3.9.4 Coating Properties; 3.10 New Developments in Thermal Spray Techniques; References; 4 Post-Spray Treatment; 4.1 Heat Treatment; 4.1.1 Electromagnetic Treatment; 4.1.2 Furnace Treatment; 4.1.3 Hot Isostatic Pressing (HIP); 4.1.4 Combustion Flame Re-melting; 4.2 Impregnation; 4.2.1 Inorganic Sealants; 4.2.2 Organic Sealants; 4.3 Finishing; 4.3.1 Grinding; 4.3.2 Polishing and Lapping; References; 5 Physics and Chemistry of Thermal Spraying 5.1 Jets and Flames5.1.1 Properties of Jets and Flames; 5.2 Momentum Transfer between Jets or Flames and Sprayed Particles; 5.2.1 Theoretical Description; 5.2.2 Experimental Determination of Sprayed Particles' Velocities; 5.2.3 Examples of Experimental Determination of Particles Velocities; 5.3 Heat Transfer between Jets or Flames and Sprayed Particles; 5.3.1 Theoretical Description; 5.3.2 Methods of Particles' Temperature Measurements; 5.4 Chemical Modification at Flight of Sprayed Particles; References; 6 Coating Build-Up; 6.1 Impact of Particles; 6.1.1 Particle Deformation 6.1.2 Particle Temperature at Impact |
Record Nr. | UNINA-9910144686803321 |
Pawłowski Lech | ||
Chichester, England ; ; Hoboken, NJ, : Wiley, c2008 | ||
Materiale a stampa | ||
Lo trovi qui: Univ. Federico II | ||
|
The science and engineering of thermal spray coatings [[electronic resource] /] / Lech Pawlowski |
Autore | Pawłowski Lech |
Edizione | [2nd ed.] |
Pubbl/distr/stampa | Chichester, England ; ; Hoboken, NJ, : Wiley, c2008 |
Descrizione fisica | 1 online resource (658 p.) |
Disciplina |
667.9
667/.9 |
Soggetto topico | Metal spraying |
ISBN |
1-282-12376-9
9786612123764 0-470-75408-7 1-61583-599-7 0-470-75407-9 |
Formato | Materiale a stampa |
Livello bibliografico | Monografia |
Lingua di pubblicazione | eng |
Nota di contenuto |
The Science and Engineering of Thermal Spray Coatings; Contents; Preface to the Second Edition; Preface to the First Edition; Acronyms, Abbreviations and Symbols; 1 Materials Used for Spraying; 1.1 Methods of Powders Production; 1.1.1 Atomization; 1.1.2 Sintering or Fusion; 1.1.3 Spray Drying (Agglomeration); 1.1.4 Cladding; 1.1.5 Mechanical Alloying (Mechanofusion); 1.1.6 Self-propagating High-temperature Synthesis (SHS); 1.1.7 Other Methods; 1.2 Methods of Powders Characterization; 1.2.1 Grain Size; 1.2.2 Chemical and Phase Composition; 1.2.3 Internal and External Morphology
1.2.4 High-temperature Behaviour1.2.5 Apparent Density and Flowability; 1.3 Feeding, Transport and Injection of Powders; 1.3.1 Powder Feeders; 1.3.2 Transport of Powders; 1.3.3 Injection of Powders; References; 2 Pre-Spray Treatment; 2.1 Introduction; 2.2 Surface Cleaning; 2.3 Substrate Shaping; 2.4 Surface Activation; 2.5 Masking; References; 3 Thermal Spraying Techniques; 3.1 Introduction; 3.2 Flame Spraying (FS); 3.2.1 History; 3.2.2 Principles; 3.2.3 Process Parameters; 3.2.4 Coating Properties; 3.3 Atmospheric Plasma Spraying (APS); 3.3.1 History; 3.3.2 Principles 3.3.3 Process Parameters3.3.4 Coating Properties; 3.4 Arc Spraying (AS); 3.4.1 Principles; 3.4.2 Process Parameters; 3.4.3 Coating Properties; 3.5 Detonation-Gun Spraying (D-GUN); 3.5.1 History; 3.5.2 Principles; 3.5.3 Process Parameters; 3.5.4 Coating Properties; 3.6 High-Velocity Oxy-Fuel (HVOF) Spraying; 3.6.1 History; 3.6.2 Principles; 3.6.3 Process Parameters; 3.6.4 Coating Properties; 3.7 Vacuum Plasma Spraying (VPS); 3.7.1 History; 3.7.2 Principles; 3.7.3 Process Parameters; 3.7.4 Coating Properties; 3.8 Controlled-Atmosphere Plasma Spraying (CAPS); 3.8.1 History; 3.8.2 Principles 3.8.3 Process Parameters3.8.4 Coating Properties; 3.9 Cold-Gas Spraying Method (CGSM); 3.9.1 History; 3.9.2 Principles; 3.9.3 Process Parameters; 3.9.4 Coating Properties; 3.10 New Developments in Thermal Spray Techniques; References; 4 Post-Spray Treatment; 4.1 Heat Treatment; 4.1.1 Electromagnetic Treatment; 4.1.2 Furnace Treatment; 4.1.3 Hot Isostatic Pressing (HIP); 4.1.4 Combustion Flame Re-melting; 4.2 Impregnation; 4.2.1 Inorganic Sealants; 4.2.2 Organic Sealants; 4.3 Finishing; 4.3.1 Grinding; 4.3.2 Polishing and Lapping; References; 5 Physics and Chemistry of Thermal Spraying 5.1 Jets and Flames5.1.1 Properties of Jets and Flames; 5.2 Momentum Transfer between Jets or Flames and Sprayed Particles; 5.2.1 Theoretical Description; 5.2.2 Experimental Determination of Sprayed Particles' Velocities; 5.2.3 Examples of Experimental Determination of Particles Velocities; 5.3 Heat Transfer between Jets or Flames and Sprayed Particles; 5.3.1 Theoretical Description; 5.3.2 Methods of Particles' Temperature Measurements; 5.4 Chemical Modification at Flight of Sprayed Particles; References; 6 Coating Build-Up; 6.1 Impact of Particles; 6.1.1 Particle Deformation 6.1.2 Particle Temperature at Impact |
Record Nr. | UNINA-9910830473603321 |
Pawłowski Lech | ||
Chichester, England ; ; Hoboken, NJ, : Wiley, c2008 | ||
Materiale a stampa | ||
Lo trovi qui: Univ. Federico II | ||
|
Slip and creep of thermal spray coatings |
Pubbl/distr/stampa | McLean, VA : , : U.S. Department of Transportation, Federal Highway Administration, Research, Development, and Technology, Turner-Fairbank Highway Research Center, , 2014 |
Descrizione fisica | 1 online resource (8 pages) : color illustrations |
Collana | Tech brief |
Soggetto topico |
Iron and steel bridges - United States - Maintenance and repair
Thermal barrier coatings Metal spraying |
Formato | Materiale a stampa |
Livello bibliografico | Monografia |
Lingua di pubblicazione | eng |
Record Nr. | UNINA-9910702624403321 |
McLean, VA : , : U.S. Department of Transportation, Federal Highway Administration, Research, Development, and Technology, Turner-Fairbank Highway Research Center, , 2014 | ||
Materiale a stampa | ||
Lo trovi qui: Univ. Federico II | ||
|
Thermal Spray 2003 [[electronic resource] ] : Advancing the Science and Applying the Technology |
Autore | Moreau C |
Pubbl/distr/stampa | Materials Park, : A S M International, 2003 |
Descrizione fisica | 1 online resource (1668 p.) |
Disciplina | 671.7/34 |
Altri autori (Persone) | MarpleB |
Soggetto topico |
Electronic books. -- local
Metal spraying -- Congresses Plasma spraying -- Congresses Metal spraying Plasma spraying Mechanical Engineering Engineering & Applied Sciences Industrial & Management Engineering |
Soggetto genere / forma | Electronic books. |
ISBN | 1-61503-258-4 |
Formato | Materiale a stampa |
Livello bibliografico | Monografia |
Lingua di pubblicazione | eng |
Nota di contenuto | ""Preface""; ""Editorial Committee (Reviewers) for ITSC 2003 Proceedings""; ""ITSC 2003 Organizing Committee""; ""Contents""; ""Volume 1 ""; ""Cold Spray""; ""Applications""; ""Corrosion & Wear Protective Coatings""; ""Equipment and Processes""; ""Feedstocks and Novel Materials""; ""HVOF""; ""Volume 2 ""; ""Science and Applications of Thermal Spray""; ""Sensors & Controls""; ""Testing and Characterization""; ""Thermal & Environmental Barrier Coatings""; ""Thermal Spraying of Polymers""; ""Title Index""; ""Author Index""; ""Company Index""; ""Key Word Index"" |
Record Nr. | UNINA-9910458563903321 |
Moreau C | ||
Materials Park, : A S M International, 2003 | ||
Materiale a stampa | ||
Lo trovi qui: Univ. Federico II | ||
|
Thermal Spray 2003 [[electronic resource] ] : Advancing the Science and Applying the Technology |
Autore | Moreau C |
Pubbl/distr/stampa | Materials Park, : A S M International, 2003 |
Descrizione fisica | 1 online resource (1668 p.) |
Disciplina | 671.7/34 |
Altri autori (Persone) | MarpleB |
Soggetto topico |
Electronic books. -- local
Metal spraying -- Congresses Plasma spraying -- Congresses Metal spraying Plasma spraying Mechanical Engineering Engineering & Applied Sciences Industrial & Management Engineering |
ISBN | 1-61503-258-4 |
Formato | Materiale a stampa |
Livello bibliografico | Monografia |
Lingua di pubblicazione | eng |
Nota di contenuto | ""Preface""; ""Editorial Committee (Reviewers) for ITSC 2003 Proceedings""; ""ITSC 2003 Organizing Committee""; ""Contents""; ""Volume 1 ""; ""Cold Spray""; ""Applications""; ""Corrosion & Wear Protective Coatings""; ""Equipment and Processes""; ""Feedstocks and Novel Materials""; ""HVOF""; ""Volume 2 ""; ""Science and Applications of Thermal Spray""; ""Sensors & Controls""; ""Testing and Characterization""; ""Thermal & Environmental Barrier Coatings""; ""Thermal Spraying of Polymers""; ""Title Index""; ""Author Index""; ""Company Index""; ""Key Word Index"" |
Record Nr. | UNINA-9910791414503321 |
Moreau C | ||
Materials Park, : A S M International, 2003 | ||
Materiale a stampa | ||
Lo trovi qui: Univ. Federico II | ||
|
Thermal Spray 2003 : advancing the science and applying the technology : proceedings of the 2003 International Thermal Spray Conference, 5-8 May, 2003, Orlando, Florida, USA / / edited by Basil R. Marple and Christian Moreau ; sponsored by ASM Thermal Spray Society, Deutscher Verband fur Schweisstechnik, International Institute of Welding |
Edizione | [1st ed.] |
Pubbl/distr/stampa | Materials Park, OH, : ASM International, c2003 |
Descrizione fisica | 1 online resource (1668 p.) |
Disciplina | 671.7/34 |
Altri autori (Persone) |
MarpleBasil. R
MoreauChristian |
Soggetto topico |
Metal spraying
Plasma spraying |
ISBN | 1-61503-258-4 |
Formato | Materiale a stampa |
Livello bibliografico | Monografia |
Lingua di pubblicazione | eng |
Nota di contenuto | ""Preface""; ""Editorial Committee (Reviewers) for ITSC 2003 Proceedings""; ""ITSC 2003 Organizing Committee""; ""Contents""; ""Volume 1 ""; ""Cold Spray""; ""Applications""; ""Corrosion & Wear Protective Coatings""; ""Equipment and Processes""; ""Feedstocks and Novel Materials""; ""HVOF""; ""Volume 2 ""; ""Science and Applications of Thermal Spray""; ""Sensors & Controls""; ""Testing and Characterization""; ""Thermal & Environmental Barrier Coatings""; ""Thermal Spraying of Polymers""; ""Title Index""; ""Author Index""; ""Company Index""; ""Key Word Index"" |
Record Nr. | UNINA-9910816687103321 |
Materials Park, OH, : ASM International, c2003 | ||
Materiale a stampa | ||
Lo trovi qui: Univ. Federico II | ||
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