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100 Key Points to Know for Pressure Vessel Design Review

2024-07-19View Original

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1. What is the definition of pressure vessels and what role do they play in industry? 2. What are the classifications of pressure vessels? 3. What are the differences in the design and manufacturing standards for different types of pressure vessels? 4. What is the formula for calculating the design pressure of pressure vessels? 5. What are the mechanical and structural factors that need to be considered in the design of pressure vessels? 6. What are the selection criteria for materials used in pressure vessels? 7. What are the requirements for welding processes and inspections in pressure vessels? 8. How should the fatigue life of materials be considered in pressure vessel design? 9. What are the various external loads that pressure vessels may experience during operation? Such as earthquakes, wind loads, etc. 10. What are the considerations for corrosion and corrosion prevention of pressure vessels? 11. How is the local and global stability of pressure vessels evaluated? 12. What issues regarding the selection, installation, and testing of safety valves need to be considered in the design and manufacturing of pressure vessels? 13. What is the thermal stress analysis of pressure vessels and what are the solutions? 14. How should the corrosivity of the medium to the material be considered in pressure vessel design? 15. What are the key considerations for the design and installation of internal and external accessories of pressure vessels? 16. What are the various processes, traditional and advanced technologies used in the manufacturing of pressure vessels? 17. What are the non-destructive testing methods for pressure vessels, and how to choose the appropriate method? 18. What are the temperature and pressure gradients that should be considered in pressure vessel design? 19. How should fire and explosion safety requirements be considered in the design process of pressure vessels? 20. How should the corrosivity of the medium to the material be considered in pressure vessel design? 21. How is the design life of pressure vessels determined? 22. What are the environmental and civil engineering requirements that should be taken into account during the installation of pressure vessels? 23. What are the various types of connections for pressure vessels, and what are their respective advantages and disadvantages? 24. How should the geometric dimension accuracy and surface quality of products be controlled in pressure vessel manufacturing? 25. What should be included in the stress analysis and design of materials for pressure vessels? 26. What are the stress analysis and brittle failure issues of pressure vessels during operation? 27. How should fatigue and corrosion fatigue problems that may arise in pressure vessels during use be prevented? 28. How should the influence of the medium during loading and unloading be considered in the design of pressure vessels? 29. What issues need to be considered in the design and fabrication of pressure vessel joints? 30. What are the pressure testing procedures and methods for pressure vessels? 31. How should quality tracking and recording be carried out for pressure vessels during inspection, acceptance, and use? 32. How should cracks and leaks that may occur in pressure vessels during use be dealt with? 33. What are the criteria for assessing the condition of pressure vessels? 34. What are the regulations regarding the reuse and disposal of pressure vessels? 35. What is the management system for the design and manufacture of pressure vessels? 36. How should different operating conditions and stress states be considered in the design of pressure vessels? 37. What are the influencing factors on the heat treatment processes and the results of heat treatment for pressure vessels? 38. What are the environmental impacts of the design and manufacture of pressure vessels? 39. What are the types of anti-corrosion coatings for pressure vessels and what are the requirements for their application? 40. How should safety risks associated with static electricity and electrostatic discharge be considered in the design of pressure vessels? 41. How should environmental protection and resource conservation be taken into account in the design and manufacture of pressure vessels? 42. How should the temperature of the material and thermal stress be controlled during the manufacturing of pressure vessels? 43. How should service life and safety factors be considered in the design and manufacture of pressure vessels? 44. What are the stress concentration and fatigue life analyses that need to be considered in the design and manufacturing of pressure vessels? 45. How is the relationship between the design and process parameters of pressure vessels and their safety taken into account? 46. What are the issues of thermal expansion and thermal stress that need to be considered in the design and manufacturing of pressure vessels? 47. What are the sudden environmental changes and accidents that pressure vessels may encounter during design and use? 48. How should handling of extreme conditions and special situations be considered in the design and manufacture of pressure vessels? 49. What are the requirements for lifting, hoisting, and installation of pressure vessels during installation? 50. How should thermal performance and energy conservation be considered in the design and manufacture of pressure vessels? 51. What are the static and dynamic loads that need to be considered in the design and manufacturing of pressure vessels? 52. What are the prediction methods for stress concentration and crack propagation issues that may arise during the design and use of pressure vessels? 53. How should the effects of the fluid during flow be considered in the design and manufacture of pressure vessels? 54. What are the issues related to heat insulation, thermal retention, and cold protection that need to be considered in the design and manufacturing of pressure vessels? 55. How should transportation, handling, and external impacts be considered in the design and manufacture of pressure vessels? 56. What are the safety measures to address liquid impact and water hammer effects that may occur during the manufacturing and use of pressure vessels? 57. How should the quality and reliability of weld joints be considered in the design and manufacture of pressure vessels? 58. How should the design and manufacture of pressure vessels take into account the flow state and distribution of the medium within the vessel? 59. How should corrosion and wear issues that may occur in pressure vessels during use be addressed? 60. How should the safety of flanges, seals, and connections be considered in the design and manufacture of pressure vessels? 61. How should the balance between internal and external pressures of a pressure vessel, as well as the stability of the pressure-bearing components, be considered in its design? 62. How are the effects of high and low temperatures to which pressure vessels may be exposed during design and use taken into account? 63. How should the properties of solid, liquid, and gaseous media be considered in the design and manufacture of pressure vessels? 64. How should material fracture toughness and adequate assurance of good fracture toughness be considered in pressure vessel design? 65. How should the temperature, pressure, and chemical properties of the medium be considered in the design of pressure vessels? 66. How should weld cracking issues that may occur in pressure vessels during manufacturing and maintenance be addressed? 67. How should lightning protection and electrical safety be considered in the design and operation of pressure vessels? 68. What damage detection techniques need to be considered in the design and manufacturing of pressure vessels? 69. What factors should be included in the life-cycle cost analysis of pressure vessel design and manufacturing? 70. What safety measures are in place to address external explosions and shock waves that pressure vessels may encounter during design and use? 71. How should stability and the rationality of the load-bearing structure be considered in the design and manufacture of pressure vessels? 72. How should appropriate non-metallic materials and composite materials be selected in the design and manufacture of pressure vessels? 73. What are the thermal stability and fire safety issues that need to be considered in the manufacturing and use of pressure vessels? 74. How should the issues of movement, vibration, and impact of pressure vessels be considered in their design? 75. How should the performance of surface treatments and protective coatings be considered in the design and manufacture of pressure vessels? 76. How should local corrosion, pitting, and stress corrosion issues that may occur in pressure vessels during design and use be prevented? 77. How should safety regarding cracks and fractures be considered in the design and manufacture of pressure vessels? 78. How should the effects of explosions and leaks on personnel and equipment, as well as environmental pollution, be taken into account in the design of pressure vessels? 79. What are the regulations regarding the transition between high temperature and high pressure, as well as low temperature and low pressure, that must be taken into account during the design and manufacturing of pressure vessels? 80. How should welding residual stresses and the effects of heat treatment be considered in the design of pressure vessels? 81. How should crack propagation and fracture failure prevention be considered in the design and manufacturing of pressure vessels? 82. How should the airtightness, watertightness, and gas-solid coupling issues of pressure vessels be controlled in their design and manufacture? 83. How should shock and vibration problems that may occur in pressure vessels during use be addressed? 84. How should combustion, explosion, and toxicity hazards be considered in the design and manufacture of pressure vessels? 85. How should the self-weight of the vessel, the applied loads, and the position of its center of gravity be considered in the design of pressure vessels? 86. What are the safety sealing and leak prevention issues that need to be considered in the design and manufacturing of pressure vessels? 87. How should wear, erosion, and damage be considered in the design and manufacture of pressure vessels? 88. What are the environmental corrosion and water quality issues that pressure vessels may face during design and use? 89. How should the design and manufacture of pressure vessels take into account dust prevention, liquid protection, and corrosion resistance? 90. How should gas leakage and seepage problems that may occur in pressure vessels during manufacturing and use be addressed? 91. How should structural strength and the effects of the external environment be considered in the design and manufacture of pressure vessels? 92. How should the stability and natural vibration of pressure vessels be considered in their design? 93. What are the local and overall performance tests that need to be considered during the design and manufacturing of pressure vessels? 94. How should rotational, tilting, and dynamic characteristics be considered in the design and manufacturing of pressure vessels? 95. How should pressure fluctuations and shock issues that may occur during the design and use of pressure vessels be addressed? 96. How should cyclic effects, fluctuations, and the liquid-gas phase interface be considered in the design and manufacture of pressure vessels? 97. What are the impacts of natural disasters and accidents that may occur during the use of pressure vessels? 98. How should the safety during load unloading and transportation be considered in the design and manufacture of pressure vessels? 99. How should deformation and failure issues that may occur in pressure vessels during design and use be addressed? 100. How should ease of operation, maintenance, and repair as well as safety be considered in the design and manufacture of pressure vessels?
Reply #22024-07-19
Thank you for sharing this. You won’t regret watching it. The circulating water in that water circulation facility is yellow, just like the water of the Yellow River. https://bbs.hcbbs.com/forum.php?mod=viewthread&tid=5667515 (Source: Haichuan Chemical Industry Forum)
Reply #32024-07-20
Could you attach the standard answer? Thank you
Reply #42024-09-14
Study hard*, and wait for the answers; P; P; P

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