Hot forging forming method for parent material of female die of die
A forming method and hot forging technology, applied in the direction of manufacturing tools, forging/pressing/hammer devices, heating/cooling equipment, etc., can solve problems such as low production efficiency, waste of raw materials, and failure to meet the needs of industrial manufacturing, and improve work efficiency Effect
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Embodiment 1
[0020] Such as figure 2 As shown, the present invention provides a method for hot forging of die base material. The materials are sorted in the feeding assembly V before being put into the four-station rotatable hot forging die, and heated in the heating induction coil IV. The material is put into the four-station rotatable hot forging die II by the manipulator III for hot forging, and the hot forging is completed by the single-point closed press I through the hot forging forming die. The four-station rotatable hot forging die II is equipped with an installation position, hot forging position, unloading position, and cooling position. After hot forging is completed, the mold rotates 1 / 4 turn, and the material at the installation position enters the hot forging position. The material that has completed hot forging enters the unloading position. After the first hot forging, the mold rotates for 1 / 4 circle, and the unloaded mold enters the cooling station to cool; the four worki...
Embodiment 2
[0022] The invention provides a four-station rotatable hot forging die, the upper template 1 is provided with a punch backing plate 3, the junction of the punch backing plate 3 and the punch 4 is provided with a punch fixing plate 5, the upper template 1 and The lower template 20 is connected with the guide sleeve 2 through the formwork guide pillar 7. The center of the lower template 20 is provided with a rotating disk 12, and the center of the rotating disk 12 is provided with a rotating shaft 23. The rotating disk 12 can rotate the rotating shaft 23, and the rotating disk There are four stations on the 12, and the installation station, the hot forging station, the discharge station and the cooling station are arranged in sequence according to the direction of rotation. The four stations are evenly distributed on the rotating disk 12. , a discharge assembly is arranged below the discharge position.
[0023] Such as Figure 4 with Figure 5 As shown, the hot forging die is ...
Embodiment 3
[0026] The basic working principle in embodiment 2 is the same as that in embodiment 1.
[0027] Such as Image 6 As shown, there is a central air-cooling assembly at the position of the rotating shaft 23, including a central air-cooling cylinder 11 and a rotary joint 17. The air outlet of the central air-cooling cylinder 11 is connected to the rotary joint 17, and the rotary joint 17 is connected to the embedded die 13 through the air quick-change joint 16.
[0028] Among them, the central air-cooled cylinder 11 compresses the air, and blows the air into the mosaic die 13 through the rotary joint 17 and the quick-change air joint 16. The purpose of this component is to prevent the temperature of the mosaic die 13 from being too high. Into the 4 stations, can effectively reduce the temperature of the mosaic concave mold 13.
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