A mechanical forging press is a powerful machine used in the forging process, which involves shaping metal using localized compressive forces. These presses are vital in manufacturing industries for producing high-strength metal components. Unlike hydraulic presses that use fluid pressure, Mechanical Forging Machine use mechanical means to apply force, typically through a crankshaft or eccentric mechanism.
The operation begins with heating a metal workpiece to a malleable temperature. The heated piece is then placed between two dies. When the press is activated, the upper die is driven downward by the mechanical system, exerting immense force on the metal. This force shapes the metal into the desired form, as defined by the dies. The process may involve several strikes to achieve the final shape and dimensions, ensuring high precision and consistency.
Mechanical Forging Machine are known for their high speed and production efficiency, making them ideal for mass production of parts such as automotive components, hardware tools, and aerospace parts. They can deliver large forces very quickly, significantly reducing cycle times compared to other types of forging equipment.
Modern mechanical forging presses are equipped with advanced control systems for precise operation and safety features to protect operators. Their robustness and reliability make them a cornerstone in industries that demand high-quality forged metal parts, ensuring superior mechanical properties and durability in the final products.
|
Model |
To Be Produced Screw Size |
Required Power |
Out Put |
Gross Weight |
Packing Dimension |
||
|
MAX DIA(mm) |
MAX LENGTH |
Pole |
HP |
Pcs/Min |
kg(Appr) |
H×L×W(mm) |
|
|
WH05032H |
5(3/16") |
32(1¼") |
4 |
3+¼ |
140-250 |
1500 |
1270×1700×1160 |
|
WH05050B |
5(3/16") |
50(2") |
6 |
3+¼ |
80-110 |
1150 |
1250×1700×1092 |
|
WH06050H |
6(1/4") |
50(2") |
6 |
3+¼ |
80-160 |
1850 |
1250×1800×1300 |
|
WH08075B |
8(5/16") |
77(3") |
6 |
5+¼ |
65-90 |
2200 |
1475×2200×1400 |
|
WH08065H |
8(5/16") |
65(2½") |
6 |
7½+¼ |
80-160 |
3900 |
1475×2400×1600 |
|
WH08110H |
8(5/16") |
110(4½") |
4 |
7½+¼ |
70-100 |
4100 |
1570×2600×1700 |
|
WH08102B |
8(5/16") |
102(4") |
6 |
5 |
60-80 |
2600 |
1580×2400×1500 |
|
WH10152B |
10(3/8") |
152(6") |
6 |
7½ |
42-58 |
4300 |
1585×2800×1620 |
|
WH12152B |
12(1/2") |
152(6") |
6 |
10 |
40-55 |
5800 |
1805×3250×1705 |
|
WH12152H |
12(1/2") |
152(6") |
6 |
15+¼ |
42-62 |
9000 |
2000×3750×1800 |
|
WH16152H |
16(5/8") |
152(6") |
6 |
20+¼ |
42-60 |
12000 |
2205×3900×1905 |
|
WH16250H |
16(5/8") |
250(10") |
6 |
25+¼ |
30-45 |
16000 |
2200×4750×2400 |
|
WH16250B |
16(5/8") |
250(10") |
6 |
20 |
28-40 |
12000 |
2200×4650×2300 |
|
WH20152H |
20(3/4") |
152(6") |
6 |
40+¼ |
35-45 |
20500 |
2608×4600×2700 |
|
WH20152B |
20(3/4") |
152(6") |
6 |
30 |
30-40 |
15000 |
2280×4200×2580 |
|
WH20200H |
20(3/4") |
200(8") |
6 |
40+¼ |
35-40 |
22000 |
2690×4900×2890 |
|
WH20300H |
20(3/4") |
300(12") |
6 |
50+¼ |
25-35 |
28000 |
3100×4900×2890 |
|
WH25152H |
25(1") |
152(6") |
6 |
75+¼ |
30-40 |
34000 |
3100×5300×3000 |
|
WH25200H |
25(1") |
200(8") |
6 |
75+¼ |
30-53 |
36000 |
3100×4950×3000 |
|
WH25300H |
25(1") |
300(12") |
6 |
100+¼ |
25-35 |
39000 |
3100×5500×3300 |
|
WH32250H |
32(1¼") |
250(10") |
6 |
100+¼ |
25-35 |
45000 |
3100×5800×3500 |
Feature
1. Taiwan drawings, technology and craftsmanship. Use closed scissors to cut materials, and the cut edges are free of burrs and bevels.
2. Use one mold and two punches to form the machine, and one process is divided into two times to form the machine body, which has good stamping resistance.
3. Use overload protection, overcurrent protection, and short-length protection. Slide failure protection, etc., the machine has good self-protection ability and product failure detection ability.
Factory display

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