Datos del producto:
|
|
Lugar de origen: | PORCELANA |
---|---|
Nombre de la marca: | Beihai Galvanizing |
Número de modelo: | No estándar |
Pago y Envío Términos:
|
|
Cantidad de orden mínima: | 1 |
Precio: | negotiable |
Detalles de empaquetado: | Como caja de madera, apto para envío y elevación. |
Tiempo de entrega: | 60-120 días laborables |
Condiciones de pago: | L/C, T/T |
Capacidad de la fuente: | Sin límite |
Información detallada |
|||
Tipo de empresa: | Fabricación y Comercio | Origen: | CHINA/TAIWÁN desde 1990 |
---|---|---|---|
Alcance: | Equipos para una planta completa de galvanizado en caliente | Ventaja: | Alta calidad |
Solicitud: | para galvanizar varias piezas de acero | Servicio postventa proporcionado: | Ingenieros disponibles mantener la maquinaria en ultramar, mantenimiento de campo y servicio de repa |
Condición: | Nuevo | Tipo: | Galvanizado por inmersión en caliente |
Revestimiento: | Galvanizado, zinc o Zn-Al, galvanizado en caliente | Dimensión (L*W*H): | personalizado |
Nombre del producto: | Línea de la galvanización de la inmersión caliente | Color: | Color personalizado |
Control: | Control inteligente | Horno: | Sistema de disparo por pulso de alta velocidad |
Clientes: | Mundial | El quemador: | Quema de alta velocidad con pulso |
Tamaño: | Hacer como el cliente necesita o diseñamos | Industrias aplicables: | Planta de fabricación |
Dimensión: | personalizado | Combustible: | gas natural, LPG, diesel |
Sistema de seguridad: | Sí | Método de enfriamiento: | amortiguamiento del agua |
Método de calentamiento: | Calentamiento de inducción | Diseño de planta: | personalizado para los clientes |
Sistema de combustión: | Sistema de combustión por pulsos de alta velocidad | ||
Resaltar: | High Velocity Pulse Firing System Hot Dip Galvanizing Line,Water Quenching Galvanizing Equipment,Induction Heating Galvanizing Plant |
Descripción de producto
We supply reliable, high-performance, environmentally friendly, and technologically advanced galvanizing factories with comprehensive services:
Our 3D view design provides a clearer and more understandable workshop layout compared to traditional AutoCAD drawings, making it accessible beyond just design professionals.
After requirements determination, we provide comprehensive documentation including:
After contract signing, we begin manufacturing by:
Our comprehensive installation and commissioning process includes:
To customize your galvanizing plant, we need the following information:
Name | Specification |
---|---|
Plan | Products to be galvanized, annual capacity, expected start date |
Galvanizing Plant | Workshop dimensions (L x W x H) |
Zinc Kettle | Size specifications and steel plate thickness |
Furnace Fuel | Fuel type preference (LNG, LPG, Diesel, etc.) |
Environmental Equipment | Wastewater, acid mist, and fume treatment requirements |
Additional Features | Waste heat systems, tank protection types, auxiliary equipment |
Beihai Galvanizing - Your trusted partner for customized galvanizing solutions. We deliver:
Partner with us for a win-win future in galvanizing solutions!
Hot dip galvanizing knowledge sharing
Normal Temperature Range between 435 and 490 °C
In this temperature interval a very strong dependence of layer growth on the Si content of the steel is observed. Four typical galvanizing ranges exist (low-silicon, Sandelin, Sebisty and high-silicon), and all have significantly different coating thickness and structure.
Growth and structure of zinc coatings are influenced by hydrogen, which diffuses out, and thus indirectly by the Si content of the steel. Silicon impedes hydrogen effusion and determines the microstructure and character of the marginal zone in steel. Phosphor concentrates in steels through segregation
processes in the marginal zone and prevents the formation of a compact and dense δ1 phase, which becomes noticeable through strong layer growth, in particular in steels containing little silicon.
In the low-silicon range and in the Sebisty range above 450 °C, hydrogen indirectly impedes layer growth, because, due to delayed hydrogen effusion or delayed hydrogen postdiffusion through the reaction of the melt with the marginal zone of the steel,a dense δ1 phase can be formed. A gap between the steel and zinc coating develops clearly in the low-silicon range and slightly less so in the Sebesty range above 450 °C, because effusing hydrogen impedes layer growth by disturbing the phase-boundary bond. For this reason, a uniform cause for the parabolic growth in these two ranges can be assumed.
In particular, in the Sandelin range, where the formation of a δ1 phase hardly ever occurs and a dense δ1 phase never occurs, the hydrogen effusion promotes the layer growth, since the reactive surface is kept constantly active.
In the high-silicon range, the influence of hydrogen is only slightly noticeable. The silicon concentrating at the phase boundary in the course of the reaction, however, reduces the iron supply in the reaction zone. For this reason, the development of a continuous δ1 phase is no longer possible, and the rate of the galvanizing reaction increases strongly compared to the Sebisty range.
Incorpore su mensaje