Ultra-large pressure vessel partial postweld heat treatment welding stress and deformation regulation and control method
A pressure vessel and post-heat treatment technology, applied in the direction of heat treatment process control, heat treatment furnace, heat treatment equipment, etc., can solve the problems of uncoordinated deformation, increased deformation, cracking, etc., and achieve the effect of reducing radial deformation and stress.
- Summary
- Abstract
- Description
- Claims
- Application Information
AI Technical Summary
Problems solved by technology
Method used
Image
Examples
Embodiment 1
[0072] Such as Figure 2-3 , super large pressure vessel cylinder thickness 50mm, diameter 40m, insert plate thickness 120mm, height about 6m, width about 4m. The size of the reinforced structure is 1200mm in length, 40mm in thickness, 300mm in height, and 800mm in spacing. The numerical simulation method is used to simulate the local post-weld segmental heat treatment of the large insert plate and its reinforcement scheme respectively, and the stress and deformation distribution of the lower path P1 of the insert plate are output as follows: image 3 shown. image 3 In (a), the ordinate represents the axial stress value of the lower path P1 of the insert plate, and the abscissa represents 125 mm from both sides of the weld. image 3 In (b), the ordinate represents the radial deformation value of the lower path P1 of the insert plate, and the abscissa represents 600 mm from both sides of the weld. Depend on image 3 (a) It can be seen that the local post-weld heat treatmen...
Embodiment 2
[0074] Such as Figure 4-5 , super large pressure vessel cylinder thickness 50mm, diameter 40m, insert plate thickness 120mm, diameter about 4.2m. The size of the reinforced structure is 1000mm in length, 40mm in thickness, 300mm in height, and 800mm in spacing. The numerical simulation method is used to simulate and calculate the local post-weld heat treatment and its reinforcement scheme, and output the stress and deformation distribution of the lower path P1 of the insert plate as follows: Figure 5 shown. Figure 5 In (a), the ordinate represents the axial stress value of the lower path P1 of the insert plate, and the abscissa represents 125 mm from both sides of the weld. Figure 5 In (b), the ordinate represents the radial deformation value of the lower path P1 of the insert plate, and the abscissa represents 500 mm from both sides of the weld. Depend on Figure 5 (a) It can be seen that the local post-weld heat treatment reinforcement scheme of the present invention...
PUM
Login to View More Abstract
Description
Claims
Application Information
Login to View More 


