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ASTM B111 C70600 Copper Nickel Seamless Tube CuNi 90/10 U Bend Heat Exchanger Tube

ASTM B111 C70600 Copper Nickel Seamless Tube CuNi 90/10 U Bend Heat Exchanger Tube

Tên thương hiệu: YUHONG
Số mẫu: Ống uốn cong chữ U đồng Niken B111 UNS C70600
MOQ: 500kg
Giá cả: có thể đàm phán
Điều khoản thanh toán: L/C,T/T
Thông tin chi tiết
Nguồn gốc:
Trung Quốc
Chứng nhận:
ABS, GL, DNV, NK, PED, AD2000, GOST9941-81, CCS, ISO 9001-2008
Tên sản xuất:
Ống trao đổi nhiệt
Tiêu chuẩn:
ASTM B111, ASME SB111
Vật liệu:
UNS C70600, CuNi 90/10
OD:
1/4", 3/8", 1/2", 5/8", 3/4", 1", 1.1/4", v.v.
WT:
BWG 25, 22, 20, 18 ... 10
Bán kính:
có thể tùy chỉnh
Đầu ống:
Đầu trơn, Đầu vát
Quá trình:
Vẽ lạnh
Ứng dụng:
Nồi hơi, thiết bị trao đổi nhiệt, nhà máy dầu khí, làm mát, bình ngưng
chi tiết đóng gói:
Vỏ gỗ / Vỏ sắt / Bó có nắp nhựa
Làm nổi bật:
Ống liền mạch niken đồng ASTM B111 C70600, Ống trao đổi nhiệt uốn cong CuNi 90/10 U
Mô tả sản phẩm

ASTM B111 UNS C70600 / CuNi 90/10 Temper O61 Copper Nickel Seamless Tube U Bend Heat Exchanger Tube
 
 

ASTM B111 C70600 (CuNi 90/10) U bend tubes are seamless and specifically designed for marine heat exchangers and condensers. Composed of 90% copper and 10% nickel with iron, they offer excellent corrosion resistance, especially against seawater and biofouling. The U-bend configuration accommodates thermal expansion in shell-and-tube systems. However, they are sensitive to high-velocity turbulence at the bend (impingement attack) and must not be used in polluted water containing sulfides, which cause rapid pitting.

 
 

Cu-Ni 90/10 vs. The Competition

  • vs. Carbon Steel (SA179): SA179 is cheaper and stronger, but it rusts instantly in seawater. Cu-Ni is chosen where corrosion resistance is mandatory.

  • vs. Stainless Steel (316L): Stainless steel can suffer from "Crevice Corrosion" in stagnant seawater (under barnacles or gaskets). Cu-Ni handles stagnant conditions (with proper velocities) better. Also, Cu-Ni has superior biofouling resistance.

  • vs. Titanium: Titanium is virtually immune to seawater corrosion but is extremely expensive and has poorer heat transfer than copper alloys. Cu-Ni is the "mid-range" option: better corrosion resistance than steel, lower cost than titanium.

 
 

Chemical Composition of Copper Alloys

Designation Chemical Composition %
Cu Sn Al As Ni Fe Mn Pb max. Zn
C44300 70.0-73.0 0.9-1.2 0.02-0.06 0.06 max 0.07 Rem
C68700 76.0-79.0 1.8-2.5 0.02-0.06 0.06 max 0.07 Rem
C70400 Rem 4.8-6.2 1.3-1.7 0.3-0.8 0.05 1.0max
C70600 Rem 9.0-11.0 1.0-1.8 1.0max 0.05 1.0max
C71500 Rem 29.0-33.0 0.4-1.0 1.0max 0.05 1.0max
C71640 Rem 29.0-32.0 1.7-2.3 1.5-2.5 0.05 1.0max

 
 
Tensile Requirements:

Copper or Copper Alloy UNS NO. Temper Designation Tensile Strength Yield Strength
Standard Former min ksi min ksi
C44300 O61 annealed 45 15
C68700 O61 annealed 50 18
C70400 H55 light-drawn 38 30
C70600 H55 light-drawn 45 15
C71500 O61 annealed 52 18
C71640 O61 annealed 63 25

 

 
Application
 
1. Seawater Heat Exchangers
2. Offshore Oil & Gas Platforms
3. Power Plant Auxiliary Coolers
4. Firewater Systems (Trim Coolers)
5. Hydraulic Oil Coolers

 
 
ASTM B111 C70600 Copper Nickel Seamless Tube CuNi 90/10 U Bend Heat Exchanger Tube 0