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Anti Corrosion Carbon Steel Superheater - Coal Fired CFB Power Plant Boiler Parts
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x| Функции | Устойчивость к высокой температуре, коррозионная стойкость, долговечность, настройка | Материал | Углеродистая сталь, сплавная сталь, нержавеющая сталь, никелевые сплавы, хастеллой, инконелл, инколо |
|---|---|---|---|
| Длина катушки | Индивидуальные | Материал катушки | Углеродистая сталь, сплавная сталь, нержавеющая сталь, никелевые сплавы, хастеллой, инконелл, инколо |
| Обработка поверхности | Окраска, оцинкование, покрытие порошком, полировка | Форма | Прямая, U-образная, серпентина |
| Приложение | Котлы, электростанции, нефтехимия, нефтеперерабатывающие заводы, химикаты, бумага и целлюлоза, текст | Размер | Индивидуальные |
| Обработка поверхности катушки | Окраска, оцинкование, покрытие порошком, полировка | Тип катушки | Голые, с перепонками |
Anti Corrosion Carbon Steel Superheater - Coal Fired CFB Power Plant Boiler Parts
Description
For power plant boiler, it is a crutial way to increase thermal economy of thermal power station by improving parameter of superheated steam. The increase of superheated steam parameters are limited by metal materials. The design of superheaters must make sure that the temperature of outer wall of heating surface pipes is lower than allowable temperature of oxidation resistance of steel, and meanwhile make sure its mechanical strength. with the development of metal material used in boilers, power station boilers in our country already generally apply high pressure, high temperature(9.8MPa, 540 degrees) and superhigh pressure parameters(13.7 MPa, 540 and 555 degrees), and have developed subcritical pressure parameters(16.7MPa, 540 and 555 degrees). Now lots of boilers apply supercritical pressure parameters(24.5MPa, 540-570 degrees), and even very few units apply higher pressure and temperture parameters.
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Application
use for heating saturated steam, steam temperature could be up to 900 degree C.
Superheater Capacity Upgrades to Increase Power Generation
Send us required technical data, such as steam capacity, presure, required temperature etc. We will design accordingly.
Differences
| Type | Advantages | Disadvantages | Supporting method |
| Pendant-type | 1.Firm structural support | 1. Flow blockage by condensed steam 2. Needs slow restart to purge the water that accumulates in the bottom. | supported from above |
| Inverted-type | 1.Proper drainage of the condensed steam | 1. Lack the structural rigidity, especially in high speed gas flow | Supported from below |
| Horizontal -type |
1. Proper drainage 2. Good structural rigidity. |
1. They do not view the flam directly so they are mainly from the convective type | Usually supported in the vertical gas ducts parallel to the main furnace. |

