Pipe Forged Cross

Pipe Forged Cross

Model:1147
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Product Introduction
Part# Thread Szie
NPTF
A Body Width MAF Tectran Fairview
1147-C 1/8 0.56 0.50 28049 102-A 102-A
1147-D 1/4 0.72 0.69 28050 102-B 102-B
1147-E 3/8 0.81 0.81 28051 102-C 102-C
1147-F 1/2 1.00 1.00 28052 102-D 102-D

 

Forging is a processing method that applies pressure to metal to induce plastic deformation, in order to obtain workpieces with specific mechanical properties, shapes, and sizes. According to different classification criteria, forging can be divided into the following types:

1

Classified by temperature conditions:

Hot forging: Forging carried out above the recrystallization temperature of metal, usually between 900 ℃ and 1300 ℃. Hot forging is beneficial for the plastic deformation of metals, but may lead to surface oxidation. ​
Warm forging: Forging carried out below the recrystallization temperature of metal, but close to that temperature, usually between 300 ℃ and 900 ℃. Warm forging can improve dimensional accuracy and reduce deformation forces. ​
Cold forging: Forging carried out at room temperature. Cold forging can achieve high dimensional accuracy and surface quality, but requires significant deformation force.

2

Classified by forging method:

Free forging: placing metal billets on a flat surface or mold, deforming them through hammering or pressure, suitable for small batch production and the manufacturing of large complex parts.
Forging: Place the metal blank into a pre processed mold, apply pressure through a forging press to fill the cavity of the mold with metal, suitable for mass production, and can achieve high dimensional accuracy and consistency. ​
Closed die forging: Forging carried out with the upper and lower molds closed, suitable for the production of complex shaped parts, and can effectively control size and shape.

3

Classified by pressure type:

Hammer forging: Using a free forging hammer or hydraulic hammer to apply impact pressure to metal, causing it to deform. Suitable for the production of large, thick walled parts. ​
Pressure forging: using hydraulic or mechanical presses to apply continuous pressure to metal to deform it. Suitable for the production of precision parts, it can achieve high dimensional accuracy and surface quality. ​

4

Classified by device type:

Mechanical press forging: using a mechanical press to apply pressure to metal, suitable for large-scale production, with high production efficiency. ​
Hydraulic forging: using a hydraulic press to apply pressure to metal, suitable for the production of parts that require high pressure or complex shapes. ​
Free forging hammer forging: using a free forging hammer to apply impact pressure to metal, suitable for the production of large, thick walled parts.

5

Classified by product shape:

Bar forging: producing parts with elongated cross-sections, such as shafts and rods.
Disk forging: producing parts with disc-shaped or disc-shaped cross-sections, such as flywheels and gears. ​
Ring forging: producing parts with circular cross-sections, such as bearing rings and sealing rings.
Special shaped forging: producing parts with special cross-sectional shapes, such as cross shaped and convex platform shaped.

6

Classified by production batch:

Single piece production: Producing individual special parts according to customer needs, usually for prototype development or special applications. ​
Small batch production: producing a limited quantity of parts, suitable for customization or small-scale demand. ​
Mass production: producing a large quantity of parts, suitable for the manufacturing of standardized products, with high production efficiency. ​

 

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