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Chloride Corrosion of Steel in Concrete
Chloride Corrosion of Steel in Concrete
Autore Tonini D. E.
Pubbl/distr/stampa [Place of publication not identified], : American Society for Testing & Materials, 1977
Descrizione fisica 1 online resource (185 pages)
Disciplina 620.1723
Soggetto topico Steel - Corrosion
ISBN 0-8031-4702-3
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Record Nr. UNINA-9910164732503321
Tonini D. E.  
[Place of publication not identified], : American Society for Testing & Materials, 1977
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Corrosion inhibitors for steel in concrete : state of the art report / / edited by B. Elsener
Corrosion inhibitors for steel in concrete : state of the art report / / edited by B. Elsener
Pubbl/distr/stampa London, : Maney Pub., 2001
Descrizione fisica 1 online resource (78 p.)
Disciplina 620.1723
Altri autori (Persone) ElsenerBernhard
Collana European Federation of Corrosion publications
Book
Soggetto topico Steel, Structural - Corrosion
Reinforced concrete - Corrosion
Corrosion and anti-corrosives
ISBN 1-907625-42-9
1-60119-175-8
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Contents; Series Introduction; Preface; Introduction; Corrosion Inhibitors for Use in Concrete; Literature Results on Corrosion Inhibitors for Steel in Concrete; Critical Evaluation of Corrosion Inhibitors; Test Methods to Evaluate Corrosion Inhibitors for Steel in Concrete; Ongoing Research Work; Concluding Remarks; References; Abbreviations; Appendix: List of Ongoing Research Projects
Record Nr. UNINA-9911004700203321
London, : Maney Pub., 2001
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Corrosion of steel in concrete [[electronic resource] ] : prevention, diagnosis, repair / / Luca Bertolini ... [et al.]
Corrosion of steel in concrete [[electronic resource] ] : prevention, diagnosis, repair / / Luca Bertolini ... [et al.]
Edizione [2nd. completely rev. & enl. ed.]
Pubbl/distr/stampa Weinheim, Germany, : Wiley-VCH, 2013
Descrizione fisica 1 online resource (436 p.)
Disciplina 620.1
620.1723
Altri autori (Persone) BertoliniLuca
Soggetto topico Reinforcing bars - Corrosion
Reinforced concrete - Corrosion
Steel, Structural - Corrosion
ISBN 1-5231-1549-1
3-527-65169-1
3-527-65171-3
1-299-27711-X
3-527-65172-1
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Cover; Title page; Copyright page; Contents; Preface to the Second Edition; Preface to the First Edition; 1: Cements and Cement Paste; 1.1 Portland Cement and Hydration Reactions; 1.2 Porosity and Transport Processes; 1.2.1 Water/Cement Ratio and Curing; 1.2.2 Porosity, Permeability and Percolation; 1.3 Blended Cements; 1.3.1 Pozzolanic Materials; 1.3.2 Ground Granulated Blast Furnace Slag; 1.3.3 Ground Limestone; 1.3.4 Other Additions; 1.3.5 Properties of Blended Cements; 1.4 Common Cements; 1.5 Other Types of Cement; References; 2: Transport Processes in Concrete
2.1 Composition of Pore Solution and Water Content2.1.1 Composition of Pore Solution; 2.1.2 Water in Concrete; 2.1.3 Water Content and Transport Processes; 2.2 Diffusion; 2.2.1 Stationary Diffusion; 2.2.2 Nonstationary Diffusion; 2.2.3 Diffusion and Binding; 2.3 Capillary Suction; 2.4 Permeation; 2.4.1 Water Permeability Coefficient; 2.4.2 Gas Permeability Coefficient; 2.5 Migration; 2.5.1 Ion Transport in Solution; 2.5.2 Ion Transport in Concrete; 2.5.3 Resistivity of Concrete; 2.6 Mechanisms and Significant Parameters; References; 3: Degradation of Concrete; 3.1 Freeze-Thaw Attack
3.1.1 Mechanism3.1.2 Factors Influencing Frost Resistance; 3.1.3 Air-Entrained Concrete; 3.2 Attack by Acids and Pure Water; 3.2.1 Acid Attack; 3.2.2 Biogenic Sulfuric Acid Attack; 3.2.3 Attack by Pure Water; 3.2.4 Ammonium Attack; 3.3 Sulfate Attack; 3.3.1 External Sulfate Attack; 3.3.2 Internal Sulfate Attack; 3.4 Alkali Silica Reaction; 3.4.1 Alkali Content in Cement and Pore Solution; 3.4.2 Alkali Silica Reaction (ASR); 3.5 Attack by Seawater; References; 4: General Aspects; 4.1 Initiation and Propagation of Corrosion; 4.1.1 Initiation Phase; 4.1.2 Propagation Phase; 4.2 Corrosion Rate
4.3 Consequences4.4 Behavior of Other Metals; References; 5: Carbonation-Induced Corrosion; 5.1 Carbonation of Concrete; 5.1.1 Penetration of Carbonation; 5.1.2 Factors That Influence the Carbonation Rate; 5.2 Initiation Time; 5.2.1 Parabolic Formula; 5.2.2 Other Formulas; 5.3 Corrosion Rate; 5.3.1 Carbonated Concrete without Chlorides; 5.3.2 Carbonated and Chloride-Contaminated Concrete; References; 6: Chloride-Induced Corrosion; 6.1 Pitting Corrosion; 6.2 Corrosion Initiation; 6.2.1 Chloride Threshold; 6.2.2 Chloride Penetration; 6.2.3 Surface Content (Cs)
6.2.4 Apparent Diffusion Coefficient6.3 Corrosion Rate; References; 7: Electrochemical Aspects; 7.1 Electrochemical Mechanism of Corrosion; 7.2 Noncarbonated Concrete without Chlorides; 7.2.1 Anodic Polarization Curve; 7.2.2 Cathodic Polarization Curve; 7.2.3 Corrosion Conditions; 7.3 Carbonated Concrete; 7.4 Concrete Containing Chlorides; 7.4.1 Corrosion Initiation and Pitting Potential; 7.4.2 Propagation; 7.4.3 Repassivation; 7.5 Structures under Cathodic or Anodic Polarization; References; 8: Macrocells; 8.1 Structures Exposed to the Atmosphere
8.2 Buried Structures and Immersed Structures
Record Nr. UNINA-9910139059503321
Weinheim, Germany, : Wiley-VCH, 2013
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Corrosion of steel in concrete : prevention, diagnosis, repair / / Luca Bertolini ... [et al.]
Corrosion of steel in concrete : prevention, diagnosis, repair / / Luca Bertolini ... [et al.]
Edizione [2nd. completely rev. & enl. ed.]
Pubbl/distr/stampa Weinheim, Germany, : Wiley-VCH, 2013
Descrizione fisica 1 online resource (436 p.)
Disciplina 620.1
620.1723
Altri autori (Persone) BertoliniLuca
Soggetto topico Reinforcing bars - Corrosion
Reinforced concrete - Corrosion
Steel, Structural - Corrosion
ISBN 9781523115495
1523115491
9783527651696
3527651691
9783527651719
3527651713
9781299277113
129927711X
9783527651726
3527651721
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Cover; Title page; Copyright page; Contents; Preface to the Second Edition; Preface to the First Edition; 1: Cements and Cement Paste; 1.1 Portland Cement and Hydration Reactions; 1.2 Porosity and Transport Processes; 1.2.1 Water/Cement Ratio and Curing; 1.2.2 Porosity, Permeability and Percolation; 1.3 Blended Cements; 1.3.1 Pozzolanic Materials; 1.3.2 Ground Granulated Blast Furnace Slag; 1.3.3 Ground Limestone; 1.3.4 Other Additions; 1.3.5 Properties of Blended Cements; 1.4 Common Cements; 1.5 Other Types of Cement; References; 2: Transport Processes in Concrete
2.1 Composition of Pore Solution and Water Content2.1.1 Composition of Pore Solution; 2.1.2 Water in Concrete; 2.1.3 Water Content and Transport Processes; 2.2 Diffusion; 2.2.1 Stationary Diffusion; 2.2.2 Nonstationary Diffusion; 2.2.3 Diffusion and Binding; 2.3 Capillary Suction; 2.4 Permeation; 2.4.1 Water Permeability Coefficient; 2.4.2 Gas Permeability Coefficient; 2.5 Migration; 2.5.1 Ion Transport in Solution; 2.5.2 Ion Transport in Concrete; 2.5.3 Resistivity of Concrete; 2.6 Mechanisms and Significant Parameters; References; 3: Degradation of Concrete; 3.1 Freeze-Thaw Attack
3.1.1 Mechanism3.1.2 Factors Influencing Frost Resistance; 3.1.3 Air-Entrained Concrete; 3.2 Attack by Acids and Pure Water; 3.2.1 Acid Attack; 3.2.2 Biogenic Sulfuric Acid Attack; 3.2.3 Attack by Pure Water; 3.2.4 Ammonium Attack; 3.3 Sulfate Attack; 3.3.1 External Sulfate Attack; 3.3.2 Internal Sulfate Attack; 3.4 Alkali Silica Reaction; 3.4.1 Alkali Content in Cement and Pore Solution; 3.4.2 Alkali Silica Reaction (ASR); 3.5 Attack by Seawater; References; 4: General Aspects; 4.1 Initiation and Propagation of Corrosion; 4.1.1 Initiation Phase; 4.1.2 Propagation Phase; 4.2 Corrosion Rate
4.3 Consequences4.4 Behavior of Other Metals; References; 5: Carbonation-Induced Corrosion; 5.1 Carbonation of Concrete; 5.1.1 Penetration of Carbonation; 5.1.2 Factors That Influence the Carbonation Rate; 5.2 Initiation Time; 5.2.1 Parabolic Formula; 5.2.2 Other Formulas; 5.3 Corrosion Rate; 5.3.1 Carbonated Concrete without Chlorides; 5.3.2 Carbonated and Chloride-Contaminated Concrete; References; 6: Chloride-Induced Corrosion; 6.1 Pitting Corrosion; 6.2 Corrosion Initiation; 6.2.1 Chloride Threshold; 6.2.2 Chloride Penetration; 6.2.3 Surface Content (Cs)
6.2.4 Apparent Diffusion Coefficient6.3 Corrosion Rate; References; 7: Electrochemical Aspects; 7.1 Electrochemical Mechanism of Corrosion; 7.2 Noncarbonated Concrete without Chlorides; 7.2.1 Anodic Polarization Curve; 7.2.2 Cathodic Polarization Curve; 7.2.3 Corrosion Conditions; 7.3 Carbonated Concrete; 7.4 Concrete Containing Chlorides; 7.4.1 Corrosion Initiation and Pitting Potential; 7.4.2 Propagation; 7.4.3 Repassivation; 7.5 Structures under Cathodic or Anodic Polarization; References; 8: Macrocells; 8.1 Structures Exposed to the Atmosphere
8.2 Buried Structures and Immersed Structures
Record Nr. UNINA-9910811362903321
Weinheim, Germany, : Wiley-VCH, 2013
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Hydroblasting and coating of steel strucutures [e-book] / Andreas W. Momber
Hydroblasting and coating of steel strucutures [e-book] / Andreas W. Momber
Autore Momber, Andreas W., 1959-
Pubbl/distr/stampa Oxford, UK ; Boston : Elsevier Advanced Technology, c2003
Descrizione fisica x, 205 p. : ill. ; 24 cm
Disciplina 620.1723
Soggetto topico Steel, Structural - Corrosion
Corrosion and anti-corrosives
Soggetto genere / forma Electronic books.
ISBN 9781856173957
185617395X
Formato Risorse elettroniche
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Introduction -- Basics of Hydroblasting -- Hydroblasting equipment -- Steel Surface Preparation by Hydroblasting -- Surface Quality Aspects -- Hydroblasting Standards -- Alternative Developments in Hydroblasting -- References -- Appendix
Record Nr. UNISALENTO-991003227869707536
Momber, Andreas W., 1959-  
Oxford, UK ; Boston : Elsevier Advanced Technology, c2003
Risorse elettroniche
Lo trovi qui: Univ. del Salento
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IEEE Standard for Zinc-Coated Forged Anchor Shackles / / Institute of Electrical and Electronics Engineers
IEEE Standard for Zinc-Coated Forged Anchor Shackles / / Institute of Electrical and Electronics Engineers
Pubbl/distr/stampa New York : , : IEEE, , 2009
Descrizione fisica 1 online resource (vii, 3 pages) : illustrations
Disciplina 620.1723
Collana IEEE Std
Soggetto topico Zinc coating
ISBN 0-7381-6076-8
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Altri titoli varianti IEEE Std C135.62-2009: IEEE Standard for Zinc-Coated Forged Anchor Shackles
IEEE Std C135.62-2009
Record Nr. UNISA-996281046903316
New York : , : IEEE, , 2009
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IEEE Standard for Zinc-Coated Forged Anchor Shackles / / Institute of Electrical and Electronics Engineers
IEEE Standard for Zinc-Coated Forged Anchor Shackles / / Institute of Electrical and Electronics Engineers
Pubbl/distr/stampa New York : , : IEEE, , 2009
Descrizione fisica 1 online resource (vii, 3 pages) : illustrations
Disciplina 620.1723
Collana IEEE Std
Soggetto topico Zinc coating
ISBN 0-7381-6076-8
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Altri titoli varianti IEEE Std C135.62-2009: IEEE Standard for Zinc-Coated Forged Anchor Shackles
IEEE Std C135.62-2009
Record Nr. UNINA-9910141804503321
New York : , : IEEE, , 2009
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Marine corrosion of stainless steels : testing, selection, experience, protection, and monitoring / / edited by D. Feron
Marine corrosion of stainless steels : testing, selection, experience, protection, and monitoring / / edited by D. Feron
Pubbl/distr/stampa London, : published for the European Federation of Corrosion by IOM Communications, 2001
Descrizione fisica 1 online resource (323 p.)
Disciplina 620.1723
Altri autori (Persone) FeronDamian
Collana Book
European Federation of Corrosion publications
Soggetto topico Stainless steel - Corrosion
Seawater corrosion
ISBN 0-429-60580-3
0-13-874810-1
1-907747-04-4
1-60119-177-4
9780138748104
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto pt. 1. Comparison of sea water corrosivity in Europe -- pt. 2. Materials selection -- pt. 3. Testing and experience -- pt. 4. Protection and monitoring.
Record Nr. UNINA-9911004704203321
London, : published for the European Federation of Corrosion by IOM Communications, 2001
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Marine Corrosion of Steels : Mechanisms and AI-Driven Solutions
Marine Corrosion of Steels : Mechanisms and AI-Driven Solutions
Autore Liu Chao
Edizione [1st ed.]
Pubbl/distr/stampa Newark : , : John Wiley & Sons, Incorporated, , 2026
Descrizione fisica 1 online resource (611 pages)
Disciplina 620.1723
Altri autori (Persone) WangBingqin
LiXiaogang
ZhangShasha
LiZhong
Soggetto topico Tekoäly
Mekaaninen
Materiaalitiede
Konetekniikka
Materiaalioppi
ISBN 3-527-85477-0
3-527-85479-7
3-527-85478-9
9783527854776
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Cover -- Title Page -- Copyright -- Contents -- Foreword -- Preface -- Chapter 1: Stress Corrosion Behavior of High-manganese Steel in Polluted Marine Atmospheric Environments -- 1.1 Introduction -- 1.2 Early-stage Corrosion Initiation Behaviors of Composite Inclusions in High-manganese Steel -- 1.2.1 Materials and Methods -- 1.2.1.1 Materials and Solutions -- 1.2.1.2 Material Microstructure Characterization -- 1.2.1.3 Electrochemical Testing -- 1.2.1.4 Microcellular Surface Potential Measurements -- 1.2.1.5 In-situ Immersion Test for Inclusions -- 1.2.2 Physicochemical Properties and Localized Corrosion Behavior -- 1.2.2.1 Physicochemical Properties of High-manganese Steel -- 1.2.2.2 Typical Inclusions Morphology and Micro-zone Electrochemistry in High-manganese Steel -- 1.2.2.3 Micro-corrosion of Inclusion Areas -- 1.3 Corrosion Behaviors and Mechanisms of High-manganese Steel in Sulfur- and Chloride-containing Environments -- 1.3.1 Materials Fabrication and Characterization -- 1.3.1.1 Materials -- 1.3.1.2 Cyclic Immersion Acceleration Test -- 1.3.1.3 Analysis of Corrosion Products -- 1.3.1.4 Rust-layer Electrochemical Testing -- 1.3.2 Corrosion Behavior and Electrochemical Characteristics -- 1.3.2.1 Corrosion Weight Loss and Corrosion Rate -- 1.3.2.2 Analysis of Corrosion Products -- 1.3.2.3 Analysis of Corrosion Morphology -- 1.3.2.4 Electrochemical Analysis of Rust Layer -- 1.3.3 Corrosion Mechanism -- 1.4 Research on the SCC Behaviors and Mechanisms of High-manganese Steel in Sulfur- and Chloride-containing Environments -- 1.4.1 Experimental Content -- 1.4.1.1 Materials -- 1.4.1.2 Constant-load U-bend Circumferential Dip Test -- 1.4.1.3 Slow Strain Rate Tensile Test -- 1.4.2 Stress Corrosion Behavior -- 1.4.2.1 Behavioral Analysis of High-manganese Steel U-bend SCC -- 1.4.2.2 Analysis of Stress-Strain Curves for High-manganese Steel.
1.4.2.3 Analysis of Fracture Morphology of High-manganese Steel -- 1.4.3 SCC Mechanism -- 1.5 Chapter Summary -- References -- Chapter 2: Corrosion Fatigue Behavior of High-manganese Steel in Atmospheric Environment -- 2.1 Introduction -- 2.2 Early Corrosion Initiation Behavior of High-manganese Steel in Simulated Atmospheric Environment -- 2.2.1 Experimental Materials and Methods -- 2.2.1.1 Materials and Solutions -- 2.2.1.2 Experimental Method -- 2.2.2 Material Microstructure Properties and Localized Corrosion Emergence Behavior -- 2.2.2.1 Microstructure and Mechanical Properties -- 2.2.2.2 Morphologies and Properties of Typical Inclusions -- 2.2.2.3 Inclusion-induced Corrosion Initiation -- 2.3 Corrosion Laws and Mechanisms of High-manganese Steel in Simulated Atmospheric Environments -- 2.3.1 Fabrication and Characterization of Materials -- 2.3.1.1 Materials -- 2.3.1.2 Cyclic Wetting and Drying Experiment -- 2.3.1.3 Electrochemical Testing -- 2.3.1.4 Analysis of Corrosion Products -- 2.3.2 Corrosion Behavior and Characteristics -- 2.3.2.1 Corrosion Weight Loss and Corrosion Rate -- 2.3.2.2 Analysis of Rust-layer Cross-section -- 2.3.2.3 Rust-layer Product Characteristics -- 2.3.2.4 Electrochemical Analysis of Rust Layers -- 2.3.2.5 Corrosion Morphology -- 2.3.3 Corrosion Electrochemical Processes of High-manganese Steel -- 2.4 Corrosion Fatigue Laws and Mechanisms of High-manganese Steel in Simulated Atmospheric Environments -- 2.4.1 Experimental Materials and Methods -- 2.4.1.1 Materials -- 2.4.1.2 Axial Stress Corrosion Fatigue Experiment -- 2.4.1.3 Characterization of Corrosion Fatigue Cracks -- 2.4.2 Electrochemical Properties and Corrosion Fatigue Behavior -- 2.4.2.1 Electrochemical Testing -- 2.4.2.2 Corrosion Fatigue Behavior -- 2.4.2.3 Morphology of Corrosion Fatigue Fracture Surface.
2.4.2.4 Analysis of Secondary Cracks due to Corrosion Fatigue -- 2.4.3 Corrosion Fatigue Mechanism of High-manganese Steel in Simulated Atmospheric Environments -- 2.5 Chapter Summary -- References -- Chapter 3: Effect of Microalloying Elements on the Corrosion Resistance of Low-density Steel -- 3.1 Introduction -- 3.2 Effect of Cr and Ni on the Corrosion Resistance of Fe-Mn-Al-C Low-density Steel -- 3.2.1 Experimental Section -- 3.2.1.1 Materials -- 3.2.1.2 Characterization of Experimental Material Microstructure -- 3.2.1.3 Accelerated Indoor Simulation of Marine Atmospheric Environment Experiments -- 3.2.1.4 Analysis of Corrosion Products and Morphologies of Specimens After Rust Removal -- 3.2.1.5 Macroelectrochemical Testing at the Initial Stage of Corrosion -- 3.2.1.6 Macroelectrochemical Experiments for Short-term Immersion -- 3.2.1.7 Real-time Corrosion Monitoring Experiment for Short-term Immersion -- 3.2.1.8 Random Forest Modeling Analysis -- 3.2.2 Basic Material Properties and Corrosion Behavior -- 3.2.2.1 Microstructure Analysis -- 3.2.2.2 Density and Mechanical Properties Analysis -- 3.2.2.3 Corrosion Morphology -- 3.2.2.4 Corrosion Kinetics Analysis -- 3.2.2.5 Macroelectrochemical Properties -- 3.2.3 Study on the Dynamic Corrosion Process of Fe-Mn-Al-C Low-density Steel by Alloying Elements -- 3.2.3.1 Real-time Monitoring and Analysis of Short-term Immersion Corrosion -- 3.2.3.2 RF Modeling Analysis -- 3.3 Effect of Cr-Ni Microalloying on the Corrosion Resistance of Fe-Mn-Al-C Low-density Steel with Heat Treatment -- 3.3.1 Materials and Methods -- 3.3.1.1 Materials -- 3.3.1.2 Microstructure Characterization -- 3.3.1.3 Mechanical Performance Testing -- 3.3.1.4 Immersion Test -- 3.3.1.5 Periodic Immersion Experiment -- 3.3.1.6 Corrosion Morphology and Corrosion Product Analysis -- 3.3.1.7 Macroelectrochemical Experiment.
3.3.1.8 Thermodynamic Calculations -- 3.3.1.9 Immersion Corrosion Real-time Experiment -- 3.3.1.10 RF Modeling Analysis -- 3.3.2 Characterization of Basic Properties and Corrosion Behavior -- 3.3.2.1 Microstructure -- 3.3.2.2 Mechanical Properties -- 3.3.2.3 Corrosion Morphology -- 3.3.2.4 Corrosion Rate -- 3.3.2.5 Corrosion Product -- 3.3.2.6 Electrochemical Properties -- 3.3.2.7 Thermodynamic Calculation Analysis -- 3.3.3 Corrosion Mechanism of Heat-treated Low-density Steel with Addition of Alloying Elements -- 3.3.4 Analysis of Corrosion Model for Fe-Mn-Al-C-Type Low-density Steel Based on Corrosion Big Data -- 3.3.4.1 Dynamic Corrosion Current -- 3.3.4.2 RF Modeling Analysis -- 3.3.4.3 Validation of RF Prediction Data -- 3.3.4.4 Analysis of Feature Variable Correlation -- 3.4 Chapter Summary -- References -- Chapter 4: Interaction of Multiple Corrosion Modes During the Degradation of Titanium-Steel Composites -- 4.1 Introduction -- 4.2 Corrosion Mechanism of TA2-Q345B Composite Plate -- 4.2.1 Experimental Procedures -- 4.2.1.1 Material Preparation -- 4.2.1.2 Crystallographic Information and Microstructural Analysis -- 4.2.1.3 Electrochemical Testing -- 4.2.1.4 Immersion Testing -- 4.2.1.5 Micro-region Electrochemical Testing -- 4.2.1.6 Thermodynamic Calculations -- 4.2.2 Corrosion Behavior of TA2-Q345B Composite Plates -- 4.2.2.1 Microstructure of TA2-Q345B Composite Plate -- 4.2.2.2 Corrosion Resistance of Titanium-Steel Composite Plates -- 4.2.2.3 Surface Morphology of Titanium-Steel Composite Samples After Immersion Test -- 4.2.2.4 The Localized Electrochemical Properties Associated with the Inclusion of Al2O3-MnS -- 4.2.3 Corrosion Mechanism -- 4.3 Degradation Process of TA2-Q345B Composite Sheet in Synthetic Contaminated Seawater Environment -- 4.3.1 Materials and Methods -- 4.3.1.1 Analysis of Corrosion Morphology and Corrosion Products.
4.3.1.2 Weight Loss Calculation -- 4.3.1.3 Electrochemical Testing -- 4.3.2 Corrosion Behavior of TA2-Q345B Composite Plates in Polluted Marine Solutions -- 4.3.2.1 Surface Morphology Observation After Immersion Experiments -- 4.3.2.2 Corrosion Morphologies of Point Defects in Titanium-Steel Composite Plates -- 4.3.2.3 Influence of Point Defects on the Corrosion Rate of Titanium-Steel Composite Plates in Simulated Marine Solutions -- 4.3.3 Galvanic Current and Galvanic Potential in Simulated Polluted Marine Solutions -- 4.3.3.1 Point Defects in Titanium Alloy and Q345B -- 4.3.4 Effect of Linear Defects on the Corrosion Rate of Titanium-Steel Composite Plates -- 4.3.4.1 Corrosion Product Analysis After Immersion Experiments -- 4.3.4.2 The Corrosion Kinetics of Titanium-Steel Composite Plates in a Marine Environment -- 4.3.4.3 Corrosion Resistance of Titanium-Steel Composite Plates in Polluted Marine Environments -- 4.3.5 Corrosion Mechanism -- 4.4 Chapter Summary -- References -- Chapter 5: Effects of Corrosion Inhibitors and Flow Rate on the Corrosion Resistance of Ductile Iron Pipes -- 5.1 Introduction -- 5.2 Study on the Difference of Microstructure and Corrosion Resistance -- 5.2.1 Materials and Methods -- 5.2.2 Material Structure Characterization Analysis -- 5.3 Corrosion Resistance Difference of Materials in Simulated Solutions -- 5.3.1 Experimental Materials and Methods -- 5.3.1.1 Materials and Solutions -- 5.3.1.2 Electrochemical Test -- 5.3.2 Study on the Difference of Corrosion Resistance of Materials in the Environment Without Corrosion Inhibitor -- 5.3.2.1 OCP Analysis -- 5.3.2.2 Polarization Curve Analysis -- 5.3.2.3 EIS Analysis -- 5.3.3 Effect of Environmental Factors on Corrosion Kinetics of Ball-milled Cast Iron in Corrosion Inhibitor-free Solution -- 5.3.4 Corrosion Resistance of Materials in Corrosion Inhibitor Environment.
5.3.4.1 Corrosion Resistances of Three Materials Under the Environment of Ethanolamine.
Record Nr. UNINA-9911069227203321
Liu Chao  
Newark : , : John Wiley & Sons, Incorporated, , 2026
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Process-Structure-Property Relationships in Metals / / Soran Birosca
Process-Structure-Property Relationships in Metals / / Soran Birosca
Autore Birosca Soran
Pubbl/distr/stampa Basel : , : MDPI - Multidisciplinary Digital Publishing Institute, , 2017
Descrizione fisica 1 online resource (v, 272 pages) : illustrations
Disciplina 620.1723
Soggetto topico Corrosion resistant alloys
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Record Nr. UNINA-9910674010703321
Birosca Soran  
Basel : , : MDPI - Multidisciplinary Digital Publishing Institute, , 2017
Materiale a stampa
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