Features
- This ultimate unique application is for all students across the world. It covers 217 topics of Advanced Welding Technology in detail. These 217 topics are divided in 5 units.
- Each topic is around 600 words and is complete with diagrams, equations and other forms of graphical representations along with simple text explaining the concept in detail.
- This USP of this application is "ultra-portability". Students can access the content on-the-go from anywhere they like.
- Basically, each topic is like a detailed flash card and will make the lives of students simpler and easier.
- Some of topics Covered in this application are:
- 1. INTRODUCTION OF WELDING
- 2. CONVENTIONAL WELDING PROCESSES
- 3. WELDING WITH PRESSURE
- 4. FUSION WELDING
- 5. INTRODUCTION TO ADVANCED PROCESS DEVELOPMENT TRENDS
- 6. SAFETY AND ENVIRONMENTAL FACTORS
- 7. AREAS FOR DEVELOPMENT OF WELDING PROCESSES
- 8. INTRODUCTION TO ENERGY SOURCES USED FOR FUSION WELDING
- 9. ENERGY-SOURCE INTENSITY
- 10. INTRODUCTION TO HEAT FLOW IN FUSION WELDING
- 11. MATHEMATICAL FORMULATIONS IN HEAT FLOW IN FUSION WELDING
- 12. PARAMETRIC EFFECTS OF HEAT FLOW IN FUSION WELDING
- 13. THERMO PHYSICAL PROPERTIES OF SELECTED ENGINEERING MATERIALS
- 14. INTRODUCTION TO FLUID FLOW PHENOMENON DURING WELDING
- 15. GAS TUNGSTEN ARC WELDING
- 16. DEEP-PENETRATION ELECTRON BEAM AND LASER WELDS
- 17. GAS METAL ARC WELDING
- 18. Submerged Arc Welding
- 19. INTRODUCTION TO TRANSFER OF HEAT AND MASS TO THE BASE METAL IN GAS-METAL ARC WELDING
- 20. HEAT TRANSFER IN GAS-METAL ARC WELDING
- 21. PROCEDURE DEVELOPMENT TRANSFER OF HEAT AND MASS TO THE BASE METAL IN GAS-METAL ARC WELDING
- 22. INTRODUCTION TO ARC PHYSICS OF GAS-TUNGSTEN ARC WELDING
- 23. ELECTRODE REGIONS AND ARC COLUMN IN GTAW
- 24. ARC WELDING POWER SOURCES
- 25. POWER SOURCE SELECTION
- 26. PULSED POWER SUPPLIES
- 27. Resistance Welding Power Sources
- 28. ELECTRON-BEAM WELDING POWER SOURCES
- 29. INTRODUCTION TO WELD SOLIDIFICATION
- 30. COMPARISON OF CASTING AND WELDING SOLIDIFICATION
- 31. SOLIDIFICATION OF ALLOY WELDS (CONSTITUTIONALSUPERCOOLING)
- 32. DEVELOPMENT OF WELD MICROSTRUCTURES
- 33. EFFECT OF WELDING RATE ON WELD POOL SHAPE AND MICROSTRUCTURE
- 34. BRAZING
- 35. SOLDERING
- 36. PHYSICAL PRINCIPLES OF BRAZING
- 37. ELEMENTS OF THE BRAZING PROCESS
- 38. HEATING METHODS FOR BRAZING
- 39. INTRODUCTION TO FUNDAMENTALS OF SOLDERING
- 40. FUNDAMENTALS OF SOLDERING
- 41. GUIDELINES FOR FLUX SELECTION
- 42. TYPES OF FLUXES
- 43. JOINT DESIGN
- 44. PRECLEANING AND SURFACE PREPARATION
- 45. SOLDER APPLICATION
- 46. SOLDERING PROCESS PARAMETERS
- 47. SOLDERING EQUIPMENT
- 48. CHARACTERISTICS OF THE COMPONENTS OF A SHIELDING GAS BLEND
- 49. SHIELDING GAS SELECTION
- 50. BASIC POWER SOURCE REQUIREMENTS
- 51. CONVENTIONAL POWER SOURCE DESIGNS
- 52. DIFFUSION BONDING PROCESS
- 53. ELECTRONIC POWER REGULATION SYSTEMS
- 54. OUTPUT LEVEL, SEQUENCE AND FUNCTION CONTROL
- 55. MMAW CONSUMABLES
- 56. SUBMERGED ARC WELDING CONSUMABLES
- 57. FILLER WIRES FOR GMAW AND FCAW
- 58. INTRODUCTION TO FUNDAMENTALS OF FRICTION WELDING
- 59. DIRECT DRIVE WELDING
- 60. INERTIA-DRIVE WELDING
- 61. JOINING OF SIMILAR METALS
- 62. JOINING OF DISSIMILAR METALS
- 63. INTRODUCTION TO FUNDAMENTALS OF DIFFUSION BONDING
- 64. BONDING SURFACES CONTAINING OXIDES
- 65. MECHANISM OF DIFFUSION BONDING
- 66. BONDING PRACTICE
- 67. FLYER PLATE ACCELERATION
- 68. IMPACT ENERGY IN EXPLOSION WELDING
- 69. DYNAMIC BEND ANGLE AND MATERIAL PROPERTIES IN EXPLOSION WELDING
- 70. JET FORMATION IN EXPLOSION WELDING
- 71. SELECTION OF BONDING PARAMETERS
- 72. BOND MORPHOLOGY AND PROPERTIES
- 73. MICROSTRUCTURE OF INTERLAYER WELDS
- 74. TENSILE LOADING OF SOFT-INTERLAYER WELDS
- 75. THE SMAW PROCESS
- 76. APPLICATIONS OF SHIELDED METAL ARC WELDING
- 77. ELECTRODES IN SMAW
- 78. WELD SCHEDULES AND PROCEDURES
- 79. VARIATIONS OF THE SMAW PROCESS
- 80. SPECIAL APPLICATIONS OF THE SMAW PROCESS
- 81. SAFETY CONSIDERATIONS IN SMAW
- 82. INTRODUCTION TO GAS-METAL ARC WELDING
- 83. PROCESS FUNDAMENTALS IN GMAW
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Details were last updated on Dec 22, 2024 01:29 +08.