ARMY MIL-HDBK-735-1993 MATERIAL DETERIORATION PREVENTION AND CONTROL GUIDE FOR ARMY MATERIEL PART ONE METALS《军用物品 第1部分 金属 防损耗材料和控制指南》.pdf
《ARMY MIL-HDBK-735-1993 MATERIAL DETERIORATION PREVENTION AND CONTROL GUIDE FOR ARMY MATERIEL PART ONE METALS《军用物品 第1部分 金属 防损耗材料和控制指南》.pdf》由会员分享,可在线阅读,更多相关《ARMY MIL-HDBK-735-1993 MATERIAL DETERIORATION PREVENTION AND CONTROL GUIDE FOR ARMY MATERIEL PART ONE METALS《军用物品 第1部分 金属 防损耗材料和控制指南》.pdf(507页珍藏版)》请在麦多课文档分享上搜索。
1、MIL-HDBK-735 9999970 0374472 024 m NOT MEASUREMENT SENSITIVE MI L-HDBK-735 (M R) 15 JANUARY 1993 MILITARY HANDBOOK MATERIAL DETERIORATION PREVENTION AND CONTROL GUIDE FOR ARMY MATERIEL, PART ONE, METALS ,- IO AMSC NIA DISTRIBUTION STATEMENT A. Approved for public release; distribution is unlimited.
2、AREA MFFP Provided by IHS Not for Resale No reproduction or networking permitted without license from IHS -,-,- MIL-HDBK-735 W 9999970 0374473 TbO FOREWORD 1. This military handbook is approved for use by all Activities and Agencies of the Department of the Army and is available for use by all Depar
3、tments and Agencies of the Department of Defense. 2. Beneficial comments (recommendations, additions, deletions) and any pertinent data that may be of use in improving this document should be addressed to: Director, US Army Research Laboratory, Materials Directorate, Materials Standardization Office
4、, ATTN: AMSRL-MA-S, Watertown, MA, 02172-0001, by using the self-addressed Standardization Document Improvement Proposal (DD Form 1426) appearing at the end of this document or by letter. 3. This handbook was developed under the auspices of the US Army Materiel Commands Engineering Design Handbook P
5、rogram, which is under the direction of the US Army Industrial Engineering Activity. Research Triangle Institute was the prime contractor for the preparation of this handbook, which was prepared under Contract No. DAAG34-73-C-005 1. 4 11 Provided by IHS Not for Resale No reproduction or networking p
6、ermitted without license from IHS -,-,-MIL-HDBK-735 9999970 0174474 9T7 MI L-H DBK-735( MR) CONTENTS FOREWORD ii LIST OF ILLUSTRATIONS xv LIST OF TABLES xx LIST OF ABBREVIATIONS AND ACRONYMS . xxv CHAPTER 1 INTRODUCTION O a 1-1 PURPOSE 1-1 1-2 SCOPE 1-1 1-3 FOCUS . 1-2 1-4 ARMY ENVIRONMENTS 1-2 1-5
7、OVERVIEW OF PART 1-3 REFERENCES . 1-3 CHAPTER 2 CORROSION PROCESSES 2-1 CHEMISTRY OF CORROSION . 2-1 2-1.1 OXIDATION-REDUCTION REACTIONS . 2-1 2-1.2 ELECTROMOTIVE FORCE SERIES . 2-2 2-1.3 GALVANIC SERIES 2-2 2-1.4 POLARIZATION AND MIXED POTENTIAL THEORY . 2-4 TYPES OF CORROSION 2-6 2-2.1 UNIFORM COR
8、ROSION 2-6 2-2 2-2.1.1 Manifestation and Quantification 2-6 2-2.1.2 Conducive Conditions . 2-6 2-2.1.3 Mechanisms . 2-6 2-2.1.4 Application Constraints and Protection Approaches . 2-7 2-2.1.5 Example 2-10 2-2.2.1 Manifestation and Quantification 2-10 2-2.2.2 Conducive Conditions . 2-11 2-2.2.3 Mecha
9、nisms . 2-11 2-2.2.4 Application Constraints and Protection Approaches . 2-11 2-2.2.5 Examples . 2-13 2-2.3.1 Manifestation and Quantification 2-13 2-2.3.2 Conducive Conditions . 2-14 2-2.3.3 Mechanism 2-14 2-2.3.4 Application Constraints and Protection Approaches . 2-15 2-2.4.1 Manifestation and Qu
10、antification 2-17 2-2.4.2 Conducive Conditions . 2-18 2-2.4.3 Mechanism 2-18 2-2.4.4 Application Constraints and Protection Approaches . 2-19 2-2.4.5 Example 2-19 2-2.4.6 Filiform Corrosion 2-19 2-2.4.6.1 Manifestation and Quantification . 2-19 2-2.4.6.2 Conducive Conditions . 2-20 2-2.4.6.3 Mechani
11、sms 2-20 2-2.2 GALVANIC CORROSION 2-10 2-2.3 PITTING CORROSION . 2-13 2-2.4 CREVICE CORROSION . 2-17 . 111 Provided by IHS Not for Resale No reproduction or networking permitted without license from IHS -,-,-MIL-HDBK-735 = 9999770 0374475 833 MIL-HDBK-735( MR) 2-2.5 INTERGRANULAR 2-21 2-2.5.1 Manife
12、station and Quantification 2-21 2-2.5.2 Conducive Conditions . 2-22 2-2.5.3 Mechanisms 2-23 2-2.5.4 Application Constraints and Protection Approaches . 2-25 2-2.5.5 Examples 2-25 2-2.6 SELECTIVE LEACHING 2-25 2-2.6.1 Manifestation and Quantification 2-25 2-2.6.2 Conducive Conditions 2-26 2-2.6.3 Mec
13、hanism 2-26 2-2.6.4 Application Constraints and Protection Approaches . 2-26 2-2.6.5 Examples 2-26 2-2.7 EROSION-CORROSION . 2-26 2-2.7.1 Manifestation and Quantification 2-27 2-2.7.2 Conducive Conditions . 2-27 2-2.7.3 Mechanism 2-32 2-2.7.4 Application Constraints and Protection Approaches . 2-33
14、2-2.7.5 Examples . 2-33 2-2.8 FRETTING CORROSION . 2-33 Manifestation and Quantification 2-33 2-2.8.2 Conducive Conditions . 2-34 Application Constraints and Protection Approaches . 2-35 2-2.8.5 Examples . 2-35 2-2.9 STRESS-CORROSION CRACKING 2-35 Manifestation and Quanitification . 2-35 2-2.9.2 Con
15、ducive Conditions . 2-37 2-2.9.3 Mechanisms . 2-41 2-2.9.5 Examples . 242 Manifestation and Quantification 2-42 2-2.10.5 Example 2-45 Conducive Conditions . 2-46 2-2.1 1.3 Mechanism 2-46 2-2.1 1.5 Examples . 2-49 2-2.12.3 Mechanism 2-52 . . . 2-2.8.1 2-2.8.3 Mechanism 2-34 2-2.8.4 2-2.9.1 2-2.9.4 Ap
16、plication Constraints and Protection Approaches . 2-41 2-2.10 HYDROGEN STRESS . 2-42 2-2.10.1 2-2.10.2 Conducive Conditions . 2-42 2-2.10.3 Mechanisms . 2-43 2-2.10.4 Application Constraints and Protection Approaches . 2-44 Manifestation and Quantification 2-45 2-2.1 1 CORROSION FATIGUE . 2-45 2-2.1
17、1.1 2-2.1 1.2 2-2.1 1.4 Application Constraints and Protection Approaches . 2-48 LIQUID METAL CORROSION 2-49 2-2.12.1 Manifestation and Quantification 2-49 2-2.12.2 Conducive Conditions . 2-50 2-2.12.4 Application Constraints and Protection Approaches . 2-53 2-2.12.5 Examples . 2-54 2-2.13.1 Manifes
18、tation and Quantification 2-54 2-2.12 2-2.13 HIGH-TEMPERATURE OXIDATION AND/ OR EROSION . 2-54 2-2.13.2 Conducive Conditions . 2-55 2-2.13.3 Mechanism 2-57 2-2.13.4 Application Constraints and Protection Approaches . 2-57 2-2.14.1 Manifestation and Quantification 2-61 2-2.14.2 Conducive Conditions .
19、 2-62 2-2.14.4 Application Constraints and Protection Approaches . 2-63 2-2.14 HIGH-TEMPERATURE SULFIDATION AND/ OR EROSION . 2-61 2-2.14.3 Mechanism 2-63 2-2.14.5 Example 2-63 2-2.15 BIOLOGICAL CORROSION . 2-64 O O iv Provided by IHS Not for Resale No reproduction or networking permitted without li
20、cense from IHS -,-,-MIL-HDBK-735 W 9999970 0374476 77T M IL-HDBK-735( MR) 2-2.15.1 Manifestation and Quantification 2-64 2-2.15.2 Conducive Conditions . 2.64 2-2.15.3 Mechanisms . 2-65 2-2.15.4 Application Constraints and Protection Approaches . 2-65 2-2.15.5 Examples . 2-66 2-3.1.1 Production 2-66
21、2-3.1.2 Field 2-69 2-3.2.1 Production 2.70 2-3.2.2 Field 2.78 2-3 ENVI RON MENTS . 2.66 2-3.1 NATURAL ENVIRONMENT 2-66 2-3.2 INDUCED ENVIRONMENT 2-69 2-4 INTERFACES 2-82 METAL TO METAL 2-82 METAL TO NONMETAL . 2-83 REFERENCES . 2.84 2-4.1 2-4.2 CHAPTER 3 CORROSION PREVENTION 3-1 INTRODUCTION 3. 1 3-
22、2 DESIGN CONSIDERATIONS AND PRACTICES 3-1 3-2.1 MATERIAL COMPATIBILITY CONSIDERATIONS . 3-2 3-2.2 GEOMETRY CONSIDERATIONS . 3-5 3-2.3 MECHANICAL DESIGN CONSIDERATIONS . 3-7 3-2.4 ANODIC AND CATHODIC PROTECTION 3-8 3-2.5 OPERATIONAL PARAMETERS . 3-9 SELECTION OF MATERIALS . 3-10 PROCESS AND FABRICATI
23、ON CONSIDERATIONS 3-10 3-4.1 COLD WORKING . 3-11 3-4.2 THERMAL EFFECTS . 3-11 3-5 INHIBITORS . 3-13 3-5.1 PASSIVATING INHIBITORS . 3-13 3-5.2 CATHODIC INHIBITORS 3-14 3-5.3 ORGANIC INHIBITORS . 3-14 3-5.4 PRECIPITATION-INDUCING INHIBITORS 3-15 3-5.5 VAPOR-PHASE INHIBITORS . 3-15 3-5.6 INHIBITED ANIT
24、FREEZE . 3-15 3-6 SURFACE TREATMENTS . 3-16 CHEMICAL CONVERSION COATINGS 3-16 3-3 3-4 3-6.1 3-6.1.1 3-6.1.3 Ferrous Alloys . 3-18 3-6.1.5 Zinc and Zinc Alloys, and Cadmium . 3-21 Aluminum and Aluminum Alloys 3-16 3-6.1.2 Copper Alloys . 3-17 3-6.1.4 Magnesium Alloys . 3-19 3-6.2 ION IMPLANTATION 3-2
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