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Fiberglass tube 5G antenna production process

(Summary description)There are three main types of production processes for fiberglass tube 5G antenna manufacturers: reciprocating filament winding process, continuous filament winding process and centrifugal casting process.

Fiberglass tube 5G antenna production process

(Summary description)There are three main types of production processes for fiberglass tube 5G antenna manufacturers: reciprocating filament winding process, continuous filament winding process and centrifugal casting process.

Information

  There are three main types of production processes for fiberglass tube 5G antenna manufacturers: reciprocating filament winding process, continuous filament winding process and centrifugal casting process.

Fiberglass tube 5G antenna

  fiberglass tube 5G antenna manufacturer reciprocating filament winding process: In this process, the dipping tank reciprocates with the rotating mandrel, and the long fiber glass filaments are placed at a certain oblique angle relative to the mandrel axis, and the auxiliary angle is soaked The ratio of the moving speed of the glue tank to the rotational speed of the mandrel is controlled, and the translational movement of the glue tank is controlled by computerized electro-mechanical.

  Fiberglass Tube 5G Antenna Manufacturer Continuous Filament Winding Process: The process is that the tube passes through a feeding station that supplies resin pre-impregnated roving, chopped glass fiber reinforced plastic fiber and resin sand mixture in motion, and the tube is continuously in the core mold. Made in progress.

  Centrifugal casting process of fiberglass tube 5G antenna manufacturer: In this process, the cut glass fiber reinforcement and sand are fed into the steel mold fixed on the bearing, and the unsaturated resin with catalyst is injected at one end of the steel mold to make It impregnates the reinforcing material. Under the action of centrifugal force, the resin replaces the air in the fibers and fillers, thereby producing a dense composite material without pores. Due to the action of centrifugal force, the inner wall of the tube forms a smooth and clean resin-rich inner surface layer. Cures at higher temperatures.

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