Forging hammer Huta Zygmunt MPM 1600 B — 1840 kgm

Dabrox Listing ID: S93428

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Huta Zygmunt MPM 1600 B forging hammer - description

Forging hammer Huta Zygmunt MPM 1600 B — 1840 kgm (ID:S93428) is forging equipment of impact action that deforms heated metal using the kinetic energy of a falling ram. The hammer delivers high impact energy and handles workpieces of large mass, giving them the required shape and structure.

Technical specifications Huta Zygmunt MPM 1600 B (ID:S93428)

TypeForging hammer
ManufacturerHuta Zygmunt
ModelMPM 1600 B
Blow energy1840 kgm
Weight of falling parts630 kg
Stroke750 mm
Opening between the stands430 mm
Length of die seat in falling parts400 mm
Length of die seat in bolster600 mm
Minimum die height180 mm
Maximum weight of upper die200 kg
Height of die parting line above floor800 mm
Blow per minute120
Inlet air pressure0,5–0,7 MPa
Inlet steam pressure0,5–0,7 MPa
Average air consumption per minute7 m3
Average steam consumption per hour380 kg
Cylinder diameter320 mm
Falling parts rod diameter240 mm
Inlet pipe diameter80 mm
Outlet pipe diameter80 mm
Anvil weight12500 kg
Total weight21900 kg

Forging hammer Huta Zygmunt - 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.
Hot forging Hot forging is a process of shaping metal under pressure at elevated temperatures. Heating reduces the deformation resistance of the material, allowing it to flow more easily into the die cavity. The process provides high productivity and the ability to form complex shapes. Used for manufacturing forgings from steel and alloys in series and mass production.
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.