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Weifang Xinbeihai Hot Dip Galvanizing Equipment Co., Ltd.

Customized Hot Dip Galvanizing Line with High-Velocity Pulse Firing System and Supplymentary Equipment

Thông tin chi tiết sản phẩm:
Nguồn gốc: Trung Quốc
Hàng hiệu: Beihai Galvanizing
Số mô hình: phi tiêu chuẩn
Thanh toán:
Số lượng đặt hàng tối thiểu: 1
Giá bán: negotiable
chi tiết đóng gói: Giống như hộp gỗ, phù hợp để vận chuyển và nâng hạ
Thời gian giao hàng: 60-120 ngày làm việc
Điều khoản thanh toán: L/C, T/T.
Khả năng cung cấp: Không giới hạn
  • Thông tin chi tiết
  • Mô tả sản phẩm

Thông tin chi tiết

Loại công ty: Sản xuất và kinh doanh Nguồn gốc: TRUNG QUỐC/ĐÀI LOAN từ năm 1990
Phạm vi: Thiết bị cho một nhà máy mạ kẽm nhúng nóng hoàn chỉnh Lợi thế: Chất lượng cao
Ứng dụng: để mạ kẽm các bộ phận thép khác nhau Dịch vụ sau bán hàng được cung cấp: Các kỹ sư sẵn sàng phục vụ máy móc ở nước ngoài,Dịch vụ bảo trì và sửa chữa hiện trường
Tình trạng: Mới Kiểu: mạ kẽm nhúng nóng
Lớp phủ: Mạ kẽm, Kẽm hoặc Zn-Al, Mạ kẽm nhúng nóng Kích thước (L*W*H): tùy chỉnh
Tên sản phẩm: Dây chuyền mạ kẽm nhúng nóng Màu sắc: Màu tùy chỉnh
Điều khiển: ĐIỀU KHIỂN THÔNG MINH Lò nung: Hệ thống bắn xung tốc độ cao
Khách hàng: Trên toàn thế giới Đốt: Đầu đốt xung tốc độ cao
Kích cỡ: Làm theo nhu cầu của khách hàng hoặc chúng tôi thiết kế Các ngành công nghiệp áp dụng: Nhà máy sản xuất
Kích thước: tùy chỉnh Nhiên liệu: khí tự nhiên, LPG, dầu diesel
Hệ thống an toàn: Đúng Phương pháp làm mát: Làm nguội nước
Phương pháp sưởi ấm: Cảm ứng sưởi ấm thiết kế nhà máy: tùy chỉnh cho khách hàng
Hệ thống đốt: hệ thống đốt xung tốc độ cao
Làm nổi bật:

High Velocity Pulse Firing System Hot Dip Galvanizing Line

,

Water Quenching Galvanizing Equipment

,

Induction Heating Galvanizing Plant

Mô tả sản phẩm

Hot Dip Galvanizing Line Plant Factory Equipment Customize Zinc Kettle Furnace
Our Service

We supply reliable, high-performance, environmentally friendly, and technologically advanced galvanizing factories with comprehensive services:

  • Demand communication and custom plant design
  • Supply of hot-dip galvanizing equipment
  • Assembly and commissioning
  • Supply of galvanizing techniques
  • After-sales service
Design Method
Step 1: Choose Plant Type - 3D Plant Layout

Our 3D view design provides a clearer and more understandable workshop layout compared to traditional AutoCAD drawings, making it accessible beyond just design professionals.

Step 2: Site/Online Visit - VR Previewing
Step 3: Confirm Project - Sign the Contract

After requirements determination, we provide comprehensive documentation including:

  • Machine overview and specifications
  • Installation and operation descriptions
  • Maintenance and troubleshooting guides
  • Detailed control diagrams
  • Electrical wiring schematics
  • Parameter settings and emergency plans
Manufacturing Process

After contract signing, we begin manufacturing by:

  • Procuring steel, raw materials, and electronic components
  • Designing control software (PLC and HMI) for system automation
Installation & Commissioning

Our comprehensive installation and commissioning process includes:

  • Mechanical assembly and system integration
  • Power system connection and layout management
  • Furnace combustion system adjustment for optimal heat efficiency
  • Traveling crane operation optimization
  • Technical guidance for hot dip galvanizing processes
Customization Requirements

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
Why Choose Us

Beihai Galvanizing - Your trusted partner for customized galvanizing solutions. We deliver:

  • Tailored factory designs to your exact specifications
  • Comprehensive equipment solutions from A to Z
  • Professional installation and commissioning services
  • Ongoing technical support and after-sales service

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.

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