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ASTM A182 F316L / 1.4404 Stainless Steel Tube Sheet Heat Exchanger Tube Plate

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ASTM A182 F316L / 1.4404 Stainless Steel Tube Sheet Heat Exchanger Tube Plate

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Brand Name :YUHONG
Model Number :ASTM A182 F316L Stainless Steel Tubesheet
Certification :ASME II, ASME III, ABS, LR, DNV, GL , BV, CCS, KR, NK, TUV, PED, GOST, ISO , TS
Place of Origin :CHINA
MOQ :1PC
Payment Terms :L/C,T/T
Delivery Time :7 DAYS
Packaging Details :Ply wooden case / Pallet
Product Name :Stainless Steel Tube Sheet
Standard :ASTM A182, ASME SA182
Material :F316L / UNS S31603 / 1.4404
Shape :Cylinder
NDT :100% PT, UT, PMI
Size :Can Custom, As Buyer's Drawing Requirements
Application :Tubular Heat Exchanger, Boiler, Pressure Vessel, Steam Turbine, Air Conditioning, etc.
High Light :ASTM A182 F16L Stainless Steel Tubesheet, Heat Exchanger Tube Plate
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ASTM A182 F316L / UNS S31603 / 1.4404 Stainless Steel Tube Sheet for Heat Exchanger

The tube sheet, also known as the tube plate, is a component of a heat exchanger that separates the shell side and the tube side of the exchanger. It serves as a support for the heat exchanger tubes and provides a leak-tight barrier between the two fluid streams.

The tubes are typically inserted and then expanded into openings in the tube sheet to ensure a secure and leak-free connection. This expansion creates a strong mechanical bond between the tubes and the tube sheet, allowing for efficient heat transfer between the two fluid streams.

Tube sheets are generally made from materials such as carbon steel, stainless steel, or other corrosion-resistant alloys, depending on the specific requirements of the heat exchanger and the properties of the fluids being processed.

Equivalent Grade of stainless steel 316L

STANDARD SS316L
WERKSTOFF NR. 1.4404 / 1.4435
UNS S31603
JIS SUS 316L
BS 316S11 / 316S13
GOST 03Ch17N14M3 / 03Ch17N14M2
AFNOR Z3CND17‐11‐02 / Z3CND18‐14‐03
EN X2CrNiMo17-12-2 / X2CrNiMo18-14-3

Type of materials Technical requirements
* according to
Duplex Stainless Steel ASTM/ASME SA182 F44, F45, F51, F53, F55, F60, F61
Stainless Steel ASTM/ASME SA182 F304,304L,F316,316L, F310, F317L, F321, F347
Carbon Steel ASTM/ASME A105, A350 LF1, LF2, A266, A694, A765 Gr.2
Alloy Steel ASTM/ASME SA182 F1, F5, F9, F11, F12, F22, F51, A350-LF3
Non Ferrous
Titanium ASTM/ASME SB381, Gr.1, Gr.2, Gr.5, Gr.7, Gr.12, Gr.16
Copper Nickel ASTM/ASME SB151, UNS 70600(Cu-Ni 90/10), 71500(Cu-Ni 70/30)
Brass, Al-brass ASTM/ASME SB152 UNS C10100, C10200,C10300,C10800,C12200
Nickel Alloys ASTM/ASME SB169,SB171, SB564, UNS 2200, UNS 4400, UNS 8825
UNS 6600, UNS 6601, UNS 6625
Alloy 20 ASTM/ASME SB472 UNS 8020
Hastelloy ASTM/ASME SB564, UNS10276 ( C 276 )
Claded materials ASTM/ASME SB898, SB263, SB264 or closer
explosion cladding, making materials of 2 in 1 or 3 in 1.
Titanium- Steel, Nickel-Steel,Titanium- Copper,
Stainless Steel- Carbon Steel, Alloys- Steel etc.

ASTM A182 F316L / 1.4404 Stainless Steel Tube Sheet Heat Exchanger Tube Plate

One of the most common heat exchangers in service within industrial process applications is the “Shell & Tube Heat Exchanger”.
They are available in many shapes, sizes and have been used in industry for over 150 years. In this exchanger group are various
sub design types: Fixed, U-tube and Floating tubesheet. Variations of all can be denoted as type “E”, “F”, “G”, “H”, “J”, “K” or “X”.
The main applications are where high pressure/temperatures are key considerations. Loosely, general designs consist of the or an
outer shell in which resides a tube bundle (these can be configured as finned, plain etc) sealed at each end by a tube sheet which
isolates the tubes and the outer shell. Shell & tube heat exchangers have the capability to transfer large amounts of heat at low(er) costs. This, in principle, down to both design simplicity and effectiveness – large tube surface for reduced weight, volume of liquid and importantly floor space.

The Important factors for the construction and maintenance of heat exchanger tube sheets

  1. Tube-to-Tube Sheet Joint: The joint between the tube and the tube sheet is critical for preventing leakage and ensuring long-term performance. Various techniques such as strength welding, rolling, or expanding are used to create a strong and dependable seal between the tube and the tube sheet.

  2. Tube Sheet Corrosion Protection: Tube sheets are often subjected to corrosive environments, particularly in industries such as chemical processing and petroleum refining. Corrosion protection measures such as coatings, cladding, or the use of corrosion-resistant materials are employed to enhance the longevity of the tube sheet.

  3. Tube Layout and Pitch: The layout and pitch of the tubes in the tube sheet play a significant role in determining the heat transfer characteristics of the heat exchanger. Engineers carefully consider factors such as fluid flow distribution, fouling tendencies, and cleaning accessibility when designing the tube layout within the tube sheet.

  4. Tube Sheet Expansion Design: Proper expansion of the tubes into the tube sheet is crucial for maintaining a secure joint while allowing for differential thermal expansion between the tubes and the tube sheet material. Special consideration is given to the expansion design to prevent issues such as stress corrosion cracking or tube joint failure.

  5. Tube Sheet Inspection and Maintenance: Periodic inspection and maintenance of the tube sheet are essential for ensuring the continued integrity of the heat exchanger. Non-destructive testing methods, such as ultrasonic testing or eddy current testing, may be used to detect defects or degradation in the tube sheet without requiring its disassembly.

Application

Removal of process heat and feed water preheating,
Cooling of hydraulic and lube oil,
Cooling of turbine, compressor, and engine,

Shipbuilding industry,

Petrochemical & Gas industry,

Power industry,

Valve industry,

general pipes connecting projects etc.

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