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Such components are widely used in critical sectors such as the automotive industry, electronic communications, and mechanical equipment.
Aluminum alloys have low density; compared to spacer bars made of conventional steel, they are lighter in weight and easier to install and maintain. This effectively reduces the load-bearing pressure on supporting structures such as towers and pylons, decreases the amount of materials required for towers, and lowers the construction costs of transmission lines.
Aluminum alloys have a relatively low melting point and excellent fluidity, enabling them to be cast into spacer bars with complex shapes through casting processes. This meets the design requirements of conductors and transmission lines of various specifications, thereby enhancing the adaptability and versatility of the products.
In the field of electromechanical engineering, it is often used in scenarios such as distribution cabinets and the frame assembly of large-scale electromechanical equipment, serving to connect, secure, and enhance the overall structural rigidity—thereby ensuring the stable operation of electromechanical devices.
In the field of electromechanical engineering, it is often used in scenarios such as distribution cabinets and the frame assembly of large-scale electromechanical equipment, serving to connect, secure, and enhance the overall structural rigidity—thereby ensuring the stable operation of electromechanical devices.
Rectangular, Concave, T-shaped pull strips
Rectangular, concave, and T-shaped pull rods are industrial profiles manufactured using the drawing process.
Carving and processing of insulating materials
Epoxy insulating board components come in a wide variety of shapes, including boards with neatly arranged round or square holes, making it easy to assemble them with other parts via bolt connections. There are also custom-shaped pieces available in different specifications, perfectly tailored to fit into diverse and intricate equipment designs.
The I-shaped pull strip is a composite profile with a distinctive I-shaped cross-section.
G10 / G11 / FR4 / 3240 Epoxy Boards
G10 and G11 epoxy resins are made by impregnating electronic-grade glass cloth with heat-resistant epoxy resin, followed by thermal pressing.
G10 / G11 / FR4 / 3240 Epoxy Boards
G10 and G11 epoxy resins are made by impregnating electronic-grade glass cloth with heat-resistant epoxy resin, followed by thermal pressing.
Insulation pads, often referred to in the industry as resin pads, high creepage distance pads, or pads specifically designed for dry-type transformers, are commonly abbreviated as DMC, reflecting their typical material composition.
Insulators are designed to increase creepage distance and play two fundamental roles in overhead transmission lines: supporting the conductors and preventing current from flowing back to ground. Both of these functions must be reliably ensured. In dry-type transformers, insulators are categorized for use at low and high voltage levels, and they are installed symmetrically on the left and right sides.