Fully Hydraulic Open Die Forging Hammer Forged Alloy Steel Core Advantages
The Fully Hydraulic Open Die Forging Hammer is a typical example of a modern, advanced forging process. It combines highly efficient, high-precision forging equipment with high-performance material processing.
Alloy steels (such as common Cr-Mo steel, Ni-Cr-Mo steel, die steel, and high-temperature alloy steel) possess advantages such as high strength, high hardness, and high hardenability due to the addition of alloying elements. However, this also brings forging challenges: High deformation resistance: Greater forging force is required to deform them.

When using a Fully Hydraulic Open Die Forging Hammer to forge alloy steel, its technological advantages are fully realized:
Meeting high deformation force requirements: The full hydraulic open die forging hammer has a large impact force and good rigidity, sufficient to cause sufficient plastic deformation of alloy steel at high temperatures.
Achieving precision forging: The deformation amount of each impact can be precisely controlled, which is especially important for alloy steel.
Adapting to a narrow temperature window: The high impact frequency can quickly complete the required deformation before the alloy steel temperature drops to the final forging temperature, reducing the number of forging passes and improving material utilization.
Improving internal quality: Controllable impact energy and frequency are beneficial for forging internal defects such as porosity and micropores in alloy steel, improving density.
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