Hot forging press Massey 1300 — 1300 ton

Dabrox Listing ID: 76216

Request detailed information on this offer:
- availability, price
- payment/delivery terms
- specifications, condition, photos, etc.

* Required fields

Massey 1300 hot forging press - description

Hot forging press Massey 1300 — 1300 ton (ID:76216) is forging and pressing equipment designed for manufacturing forgings from ferrous and non-ferrous metals by hot closed-die forging. The press is used in large-scale and mass production to produce precise die forgings of complex shape. The equipment is widely used in the automotive industry.

Technical specifications Massey 1300 (ID:76216)

TypeHot forging press
ManufacturerMassey
Model1300
Capacity1300 ton
Stroke254 mm
Stroke per min.90
Journal dia.406 mm
Shaft diameter at eccentric660 mm
Ram width (L to R)838 mm
Depth (F to B)787 mm
Between column (L to R)980 mm
Table to Floor710 mm
Ram to table (bottom of stroke)622 mm
Ram to Table (top of stroke)876 mm
Side opening in columns depth (F to B)610 mm
Height600 mm
Table width (L to R)950 mm
Depth (F to B) Wedge686 mm
Table adjustment13 mm
Motor rating (Continuous)50 kW
Motor speed at full load560 rpm
Supply system380 V, (+- 20V) 3ph, 50Hz
Total Height5270 mm
Above floor4735 mm
Max. Width (L to R)3850 mm
Depth (F to B)3330 mm
Floor space required3800 x 3300 mm
Approx. weight75 ton

Hot forging press Massey - 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.
Preforming Preforming prepares the workpiece for the main stamping operation by giving it an approximate shape of the future part. The metal is distributed in the die to facilitate final filling and reduce tool wear. This intermediate step improves accuracy and quality of the finished product.
Piercing Piercing forms a hole in a solid workpiece by driving a tool through the material without removing it. The metal is displaced sideways, creating a through or blind opening while preserving the structure around it. The operation is performed on presses and is used in the production of hollow parts such as bushings, rings, and shafts.