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ASME SA516 Gr.70 Steel Baffle Plate Boiler And Pressure Vessel Support Plates

Categories Heat Exchanger Baffle
Brand Name: YUHONG
Model Number: ASME SA516 GR.70 Carbon Steel Baffle Plate
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: Baffle / Suport Plate
Standard: ASTM A516, ASME SA516
Material: Grade 70, 70N
Shape: According to the client's request
Size: According to the client's request
High Light: Grade 70 Carbon Steel Baffles, ASME SA516 Gr.70 Steel Support Plate
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Yuhong Group Co.,Ltd
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ASME SA516 Gr.70 Steel Baffle Plate Boiler And Pressure Vessel Support Plates

ASME SA516 GR.70 Carbon Steel Baffle Support Plate For Pressure Vessels


ASME SA516 Gr. 70 is a high-quality carbon steel plate commonly used in the fabrication of pressure vessels and industrial boiler components. With its excellent mechanical properties, including good tensile strength and toughness, this material is particularly suited for applications in environments that demand resilience against pressure and temperature fluctuations. These plates are designed to provide structural support and to guide the flow of fluids, ensuring optimal operational performance. Their ability to withstand stress and fatigue makes them a popular choice in industries such as oil and gas, chemical processing, and power generation


Equivalent Grade of ASME SA516 Grade 70 plate

British StandardEuropean NormASTM/ASMEDIN
BS1501-224-490A/BEN10028 P355GHA/SA516 – Grade 70

Chemical Requirements of ASME SA516 Grade 70 plate

ElementComposition %
Grade 55
[Grade 380]
Grade 60
[Grade 415]
Grade 65
[Grade 450]
Grade 70
[Grade 485]
Carbon, max a,b :
1⁄2 in. [12.5 mm] and under0.180.210.240.27
Over 1⁄2 in. to 2 in. [12.5 to 50 mm], incl0.200.230.260.28
Over 2 in. to 4 in. [50 to 100 mm], incl0.220.280.250.30
Over 4 to 8 in. [100 to 200 mm], incl0.240.270.290.31
Over 8 in. [200 mm]0.260.270.290.31
Manganese, b :
1⁄2 in. [12.5 mm] and under
Heat analysis0.60–0.900.60–0.90 c0.85–1.200.85–1.20
Product analysis0.55–0.980.55–0.98 c0.79–1.300.79–1.30
Over 1⁄2 in. [12.5 mm]:
Heat analysis0.60–1.200.85–1.200.85–1.200.85–1.20
Product analysis0.55–1.300.79–1.300.79–1.300.79–1.30
Phosphorus, max a0.250.250.250.25
Sulphur, max a0.250.250.250.25
Silicon
Heat analysis0.15–0.400.15–0.400.15–0.400.15–0.40
Product analysis0.13–0.450.13–0.450.13–0.450.13–0.45
a Applies to both heat and product analyses.
b For each reduction of 0.01 percentage point below the specified maximum for carbon, an increase of 0.06 percentage point above the specified maximum for manganese is permitted, up to a maximum of 1.50 % by heat analysis and 1.60 % by product analysis.
c Grade 60 plates 1⁄2 in. [12.5 mm] and under in thickness may have 0.85–1.20 % manganese on heat analysis, and 0.79–1.30 % manganese on product analysis.

Tensile Requirements of ASME SA516 Grade 70 plate

ASTM A516Grade 55
[380]
Grade 60
[415]
Grade 65
[450]
Grade 70
[485]
Tensile strength, ksi [MPa]55–75 [380–515]60–80 [415–550]65–85 [450–585]70–90 [485–620]
Yield strength, min,a ksi [MPa]30 [205]32 [220]35 [240]38 [260]
Elongation in 8 in. [200 mm], min, % b23211917
Elongation in 8 in. [50 mm], min, % b27252321
a Determined by either the 0.2 % offset method or the 0.5 % extension-under-load method.
b See Specification A20/A20M for elongation adjustment.

Advantages of ASME SA516 Gr. 70 plate:

  • Cost-Effectiveness: More affordable for large-scale projects.
  • Ease of Fabrication: Excellent weldability and formability.
  • Good Performance: Adequate mechanical properties for various applications.
  • Versatility: Suitable for a range of industries where extreme corrosion resistance is not the primary concern.

Other Materials

Type of materialsTechnical requirements
* according to
Duplex Stainless SteelASTM/ASME SA182 F44, F45, F51, F53, F55, F60, F61
Stainless SteelASTM/ASME SA182 F304,304L,F316,316L, F310, F317L, F321, F347
Carbon SteelASTM/ASME A105, A350 LF1, LF2, A266, A694, A765 Gr.2
Alloy SteelASTM/ASME SA182 F1, F5, F9, F11, F12, F22, F51, A350-LF3
TitaniumASTM/ASME SB381, Gr.1, Gr.2, Gr.5, Gr.7, Gr.12, Gr.16
Copper NickelASTM/ASME SB151, UNS 70600(Cu-Ni 90/10), 71500(Cu-Ni 70/30)
Brass, Al-brassASTM/ASME SB152 UNS C10100, C10200,C10300,C10800,C12200
Nickel AlloysASTM/ASME SB169,SB171, SB564, UNS 2200, UNS 4400, UNS 8825
UNS 6600, UNS 6601, UNS 6625
Alloy 20ASTM/ASME SB472 UNS 8020
HastelloyASTM/ASME SB564, UNS10276 ( C 276 )
Claded materialsASTM/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.

Application
  1. Pressure Vessels:

    • Used as internal components to direct fluid flow and enhance mixing, thereby improving the efficiency of the vessel.
  2. Boilers:

    • Employed in steam boilers to support heat transfer surfaces and manage water circulation.
  3. Heat Exchangers:

    • Function as baffles in heat exchangers to improve thermal efficiency by directing fluid flow and preventing turbulence.
  4. Chemical Processing:

    • Utilized in reactors and storage units to assist in the mixing and reaction of chemicals while providing structural integrity.
  5. Oil and Gas Industries:

    • Applied in separators and tanks to facilitate the separation of oil, gas, and water, ensuring efficient operation under high pressure.
  6. Power Plants:

    • Used in both fossil fuel and nuclear power plants as part of cooling systems and heat recovery systems to ensure optimal performance.
  7. Water Treatment Facilities:

    • Serve as essential components in clarifiers and sedimentation tanks to help improve water quality through effective flow management.
  8. Food and Beverage Industry:

    • Certain applications may call for SA516 Gr. 70 plates for structural support in specialized processes, provided proper coating is applied for corrosion resistance.
  9. Pharmaceutical Manufacturing:

    • In some cases, they are used in reactors and vessels, ensuring strong and durable support structures.

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