NICKEL ALLOY FINNED TUBE EMBEDDED G-FIN TYPE SB163 MONEL 400

产品详情
原产地:中国中国
品牌名称: TONG CHUANG品牌名称: TONG CHUANG
认证:ABS、GL、DNV、NK、PED、AD2000、GOST9941-81、CCS、ISO 9001-2008
Model Number: SB163 MONEL 400
付款和发货条款
最低订购量:10 件
价格面议
包装细节木箱/铁箱/带塑料盖的捆包
交货时间:视数量而定
付款条件:电汇、见票即付
供应能力:每月 10000 件

SKU: 775 分类:
产品名称Embedded G-type Fin Tube类型G 型
管道标准:ASME SB163管道材料:MONEL 400 (UNS N04400)
管外径20mm To 219mm OD Max.鳍片厚度:0.8 毫米至 4 毫米
管道长度:As Request鳍片材料Alumininum 1060
鳍片高度:0.25′(6.35 毫米)至 1.5′(38 毫米)申请:HEAT EXCHANGE, BOILER, Etc.
强光

Embedded Finn Tube

ASME SB163 Finn Tube

Finned Tube ASME SB163

NICKEL ALLOY FINNED TUBE EMBEDDED G-FIN TYPE SB163 MONEL 400

Advantage of Fin Tube

Transferring heat from a hot fluid into a colder fluid through a tube wall is the reason many of us use finned tubes. But you may ask, what is the major advantage of using a finned tube? Why can’t you just use a regular tube to make this transfer? Well you can but the rate will be much slower.

By not using a finned tube the outside surface area is not significantly greater than the inside surface area. Because of that, the fluid with the lowest heat transfer coefficient will dictate the overall heat transfer rate. When the heat transfer coefficient of the fluid inside the tube is several times larger than that of the fluid outside the tube the overall heat transfer rate can be greatly improved by increasing the outside surface area of the tube.

Finned tubes increase outside the surface area. By having a finned tube in place, it increases the overall heat transfer rate. This then decreases the total number of tubes required for a given application which then also reduces overall equipment size and can in the long-run decrease the cost of the project. In many application cases, one finned tube replaces six or more bare tubes at less than 1/3 the cost and 1/4 the volume.

For applications that involve the transfer of heat from a hot fluid to a colder fluid through a tube wall, fin tubes are used. Usually, for an air heat exchanger, where one of the fluids is air or some other gas, the air side heat transfer coefficient will be much lower, so additional heat transfer surface area or a fin tube exchanger is very useful. The overall pattern flow of a finned tube exchanger is often crossflow, however, it can also be parallel flow or counterflow.

 

Fins are used to increase the effective surface area of heat exchanger tubing. Furthermore, finned tubes are used when the heat transfer coefficient on the outside of the tubes is appreciably lower than that on the inside. In other words, heat transferred from liquid to gas, vapor to gas, such as steam to air heat exchanger, and thermic fluid to air heat exchanger.

SB 163 N04400 Nickel based ASME SB 163 UNS N04400 pipe is known for its resistant to seawater and steam at high temperaturesas.

Embedded G-Type Finned Tube Features:

  • 1. Compact design
  • 2. High-performance
  • 3. Easy installation
  • 4. Less space required
  • 5. Less cabling
  • 6. Optimized surface
  • 7. Finest technology used
  • 8. Average corrosion protection
  • 9. Less energy consumption
  • 10. Increased reliability
  • 11. Low maintenance
  • 12. High mechanical resistance

Processes of G-type Finned Tube

In G-type finned tubes, the fins are prepared by embedding the metal strip into a groove. The latter is formed on a base tube. Placing the fin on it, back-filling is done – resulting in strong attachment of the fins to the base tubes. Hence, the name G-Fin Tubes has come up. The three processes mentioned above are carried out simultaneously. Maximum heat transfer is expected out of the g-fin tubes as the fins are strongly attached to the base tube.

The G-type finned tubes usually work at high temperature (with around 400 degree Celsius) applications. Made of copper, carbon, or aluminium, these fins have comparatively less resistance towards atmospheric corrosion. On the other hand, mechanical resistance is acceptable. Stainless steel and carbon steel fin materials are also used, but particular processing and tooling of the steel fin strips are necessary. Air coolers, radiators, etc use the g-fin tubes.

技术细节/基管细节

  • 钢管直径:最小外径 20 毫米,最大外径 219 毫米。
  • 管材厚度:最小 2 毫米,最大 16 毫米
  • 钢管材料:碳钢、不锈钢、合金钢、Corten 钢、双相钢、超级双相钢、镍钴合金、高铬高镍和镍钴合金、CK 20 材料及其他材料。

About Monel 400 Base Tube

 

Monel belongs to a group of nickel alloys. It is produced with high concentrations of copper and chromium in their chemical composition. These tubes are designed to suffice in corrosion stress-induced environments. They don’t easily dissociate or deform under any temperatures. The SB 163 N04400 grade is designed with superior strength and excellent mechanical properties. They possess a minimum tensile strength of 550Mpa and a minimum yield strength of 240Mpa. The products from this grade can be easily elongated by 40%.

 

蒙乃尔 400 is a nickel-copper alloy (about 67% Ni – 23% Cu) that is resistant to sea water and steam at high temperatures as well as to salt and caustic solutions. Alloy 400 is a solid solution alloy that can only be hardened by cold working. This nickel alloy exhibits characteristics like good corrosion resistance, good weldability and high strength. A low corrosion rate in rapidly flowing brackish or seawater combined with excellent resistance to stress-corrosion cracking in most freshwaters, and its resistance to a variety of corrosive conditions led to its wide use in marine applications and other non-oxidizing chloride solutions.

 

 

化学成分

等级CSiSCr
蒙乃尔 4000.30 最大值最多 2.00最大 0.500.24max28.0-34.0最高 2.5063.00 分钟-

机械性能

要素密度熔点拉伸强度屈服强度(0.2%Offset)伸长率
蒙乃尔 4008.8 克/立方厘米1350°C (2460°F)Psi - 80,000 , MPa - 550Psi - 35,000 , MPa - 24040 %

 

 

物理特性

 

属性公制帝国
密度8.8 克/立方厘米

0.318 磅/英寸3

Industries of G-Type Finned Tubes

  • 橡胶种植
  • 发电厂
  • 石油工业
  • 化学工业
  • Marine engineering.
  • Chemical and hydrocarbon processing equipment.
  • Gasoline and freshwater tanks.
  • Crude petroleum stills.
  • De-aerating heaters.
  • Boiler feed water heaters and other heat exchangers.
  • Industrial heat exchangers.
  • Chlorinated solvents.
  • Crude oil distillation towers.