Hydraulic forging hammer Lasco KH 200 — 20 kJ

Dabrox Listing ID: 76299

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Lasco KH 200 hydraulic forging hammer - description

Hydraulic forging hammer Lasco KH 200 — 20 kJ (ID:76299) is impact-type forging equipment with hydraulic drive. Unlike traditional hammers, the impact energy here is generated not by the free fall of the ram, but by the forced movement of the piston under fluid pressure. This design allows precise adjustment of each blow's energy, increases efficiency, and reduces vibration levels.

Technical specifications Lasco KH 200 (ID:76299)

TypeHydraulic forging hammer
ManufacturerLasco
ModelKH 200
Blow energy2000 kgm
Maxi falling height with standard tool1100 mm
Weight for falling tup1800 kg
Height of die180 mm
Max. weight for die340 Kg
Way between guides625 mm
Lenght of ram560 mm
Motor27 kW
Total height of hammer6150 mm
Total height over the floor5300 mm
Weight of the anvil block21 ton
Total weight of hammer43 ton

Hydraulic forging hammer Lasco KH 200 - technological processes and operations

Forging The process of plastic deformation of metal, in which the workpiece changes shape under the impact of blows or static pressure. During forging, the metal structure is densified, internal inhomogeneities are eliminated, and the mechanical properties of the material are improved. As a result, forged products are distinguished by high strength and reliability when operating under significant loads. Forging is used both for producing finished parts and for preparing workpieces for subsequent stamping.
Closed-die forging The workpiece is deformed inside a die cavity that restricts metal flow, forcing it to fill the exact shape of the tool. Under high pressure, the material spreads into every recess and detail of the die, producing a part with precise geometry. This method provides high accuracy and repeatability, making it the standard for series and mass production of complex forgings.
Drop forging A method of hot closed-die forging in which the workpiece is deformed by the energy of a falling ram. Under the impact, the metal fills the die cavity, reproducing its geometry and taking the shape of the finished part. The process is characterized by high productivity and repeatability, making it in demand in series and mass production.