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Pressure Vessel Tube Plate 316L Special-Shaped Tube Plate 304 Baffle Plate Drawing Custom Tube Plate
Various Materials of the tube sheet:
Traditional materials: carbon steel, stainless steel
Emerging materials: nickel base alloy, titanium,zirconium, carbon steel composite plate, stainless steel composite plate, etc.
Flexible Holes of the tube sheet:
Besides the most common round shapes, special patterns also can be processed, such as tapered hole, eliptical hole, square hole, dentate hole, diamond hole, irregular shaped hole, etc.
Application of the tube sheet:
Tube sheet is widely used in tube heat exchangers, boilers, pressure vessels, steam turbines, large central air-conditioning industry.
Specification of the tube sheet:
1 | For short hole tubesheet: the hole diameter range: Φ1.5mm-238mm |
2 | For deep hole tubesheet: the hole diameter range: Φ12mm-50mm |
3 | The max hole depth: 1100mm |
4 | The max tubesheet diameter: Φ8600mm |
Tube sheet flanges can be divided into large tube sheet flanges and small tube sheet flanges by model; they can be divided into ordinary tube sheet flanges and high pressure tube sheet flanges by pressure, and stainless steel tube sheets by material. Flanges, carbon steel pipe flanges, from this we can see that in order to make a good quotation for tube sheet flanges, we must know its specifications, pressures, materials, standards and other elements. A tube sheet is a kind of fitting that drills a hole on the steel plate with the same outer diameter as the tube, and then penetrates the tube and welds it to fix it. Processing description In the calculation of the fixed tube sheet, the axial stress of the shell, the axial stress of the heat exchange tube, and the pull-off force q between the heat exchange tube and the tube sheet are calculated according to various working conditions with temperature difference. When strength (or stability) conditions cannot be met, expansion joints are required.
The tube sheet is a kind of fitting that drills a hole slightly larger than the outer diameter of the pipe on the circular steel plate, and then penetrates the pipe and welds it to fix it. In the calculation of the fixed tube sheet, the axial stress of the shell, the axial stress of the heat exchange tube, and the pull-off force q between the heat exchange tube and the tube sheet are calculated according to various working conditions with temperature difference. When the strength (or stability) conditions are met, expansion joints are required. In the calculation of the strength of the fixed tube sheet, when the thickness of the tube sheet is determined and no expansion joints are provided, sometimes the strength of the tube sheet is not enough. After the expansion joints are provided, the thickness of the tube sheet may meet the requirements. At this time, expansion joints can also be set to reduce the thickness of the tube sheet, but it should be determined from a comprehensive evaluation of material consumption, manufacturing difficulty, safety and economic effects.