Description |
1 online resource. |
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text file |
Series |
Chemistry research and applications
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Chemistry research and applications series.
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Bibliography |
Includes bibliographical references and index. |
Contents |
Intro; Contents; Preface; Introduction; Acronyms; Materials; Methods; Phenomenon; Part I. Methods to Evaluate Corrosion of Metals; Chapter 1; Classical and Modern Methods for Corrosion Impact Rate Determination for Aluminium and Strengthened Aircraft Alloys. Fundamentals and Practical Applications; Abstract; 1. Introduction; 1.1. Importance of the Aluminum Alloys for the Industrial Practice; 1.1.1. Technically Pure Aluminum and Low Doped Alloys; 1.1.2. Strengthened and High Doped Alloys; 1.2. Brief Inferences; 2. Corrosion: Basic Concepts and Definitions; 2.1. Introduction |
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2.2. Low Doped Alloys Corrosion2.3. High Doped Strengthened Alloys Corrosion; 2.3.1. Basic Concepts; 2.3.2. Corrosion Mechanism Forms and Factors; 2.4. Brief Inferences; 2.4.1. Aqueous Medium pH and Composition; 2.4.2. Corrosive Medium Oxygen Content; 2.4.3. Hydrodynamic Regime; 2.4.4. Temperature; 2.4.5. Pressure; 2.4.6. Mechanical Impact; 2.4.7. Compositional Impact; 2.4.8. Structural Impact; 2.5. Other Corrosion Forms; 2.5.1. High-Temperature Oxidation; 2.5.2. Corrosion of Welded Joints; 2.5.3. Microbially Influenced Corrosion; 2.5.4. Erosion and Tribocorrosion |
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2.5.5. Undercoating Corrosion2.6. Brief Inferences; 3. Corrosion-Rate Determination Techniques; 3.1. Electrochemical Analytical Methods; 3.1.1. Introduction; 3.1.2. Basic Concepts; 3.1.3. Brief Inferences; 3.2. Classical Electrochemical Methods; 3.2.1. Passive Electrochemical Measurements. Potential Value Determination; 3.2.1.1. Fundamental Backgrounds; 3.2.1.2. Brief Inferences; 3.2.1.2.1. Advantages; 3.2.1.2.2. Disadvantages; 3.2.1.2.3. Fields of Application; 3.3. Active Electrochemical Measurements. Corrosion Current Determination; 3.3.1. Fundamental Backgrounds; 3.3.2. Brief Inferences |
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3.3.2.1. Advantages3.3.2.2. Disadvantages; 3.3.2.3. Fields of Application; 3.4. AC-Electrochemical Measurement Methods. Electrochemical Impedance Spectroscopy; 3.4.1. Fundamental Backgrounds; 3.4.1.1. Active (Ohmic) Resistance; 3.4.1.2. Capacitance and Capacitive Resistance; 3.4.1.3. Inductance and Inductive Resistance; 3.4.1.4. Constant Phase Elements, Incomplete Capacitance; 3.4.1.5. Warburg Diffusion Element (W); 3.4.1.6. Data Presentation of the EIS Spectra; 3.4.1.7. Electrochemical Impedance Spectral Data Validation; 3.4.1.8. Brief Inferences; 3.4.1.8.1. Advantages |
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3.4.1.8.2. Disadvantages3.4.1.8.3. Fields of Application; 3.5. Modern Electrochemical Methods; 3.5.1. Current and Potential Fluctuation Determination. Electrochemical Noise Measurement; 3.5.1.1. Fundamental Backgrounds; 3.5.1.2. ECN-Data Presentation; 3.5.1.3. Brief Inferences; 3.5.1.3.1. Advantages; 3.5.1.3.2. Disadvantages; 3.5.1.3.3. Fields of Application; 3.5.2. Advanced Surface Scanning Electrochemical Techniques, Scanning Vibrating Electrode Technique; 3.5.2.1. Fundamental Backgrounds; 3.5.2.2. Surface Morphology Qualitative Data |
Local Note |
eBooks on EBSCOhost EBSCO eBook Subscription Academic Collection - North America |
Subject |
Corrosion and anti-corrosives.
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Corrosion and anti-corrosives. |
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Protective coatings.
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Protective coatings. |
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TECHNOLOGY & ENGINEERING -- Engineering (General) |
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TECHNOLOGY & ENGINEERING -- Reference. |
Genre/Form |
Electronic books.
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Added Author |
Gergely, AndrĂ¡s (Chemical engineer), editor.
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Other Form: |
Print version: Phenomena and theories in corrosion science. Hauppauge, New York : Nova Science Publishers, Inc., 2019 9781536152524 (DLC) 2019010569 |
ISBN |
1536152536 |
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9781536152531 (electronic book) |
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9781536152524 (hardcover) |
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