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You are here: Home » News » Anvil (round cake) forging process

Anvil (round cake) forging process

Publish Time: 2025-03-24     Origin: Site

Anvil (round cake) forging is an indispensable part of industrial manufacturing, widely used in machinery, metallurgy, shipbuilding, energy and other fields. Its excellent mechanical properties and durability make it the ideal choice for high strength and high wear resistance. This paper will introduce in detail the manufacturing process of anvil (round cake) forgings, the application field and the customization service provided by the source manufacturer.

Anvil (round cake) forgings manufacturing process 

1. Material selection Anvil (round cake) forgings are usually made of high-quality alloy steel or carbon steel as raw materials. These materials have high strength, high toughness and good wear resistance, and can meet the needs of various complex working conditions. 

2. Forging process Forging is the core process of manufacturing anvil (round cake) forgings. Through high temperature heating and pressure forming, the internal structure of the forging is more dense, and the mechanical properties are significantly improved. Common forging processes include free forging, die forging and ring forging. Free forging: suitable for small batch, multi-variety production, high flexibility. Die forging: suitable for mass production, high dimensional accuracy, good surface quality. Ring forging: Suitable for large forgings ring forgings, high material utilization. 

3. After the heat treatment forging is completed, the forging needs to be heat treated to further improve its mechanical properties. Common heat treatment processes include quenching, tempering and normalizing. 

4. Machining The forgings after heat treatment need to be machined to achieve the dimensional accuracy and surface finish required by the design. Common processing processes include turning, milling, grinding, etc.

5. Quality testing Finally, the forgings need to undergo strict quality testing, including ultrasonic inspection, magnetic particle inspection, hardness testing, etc., to ensure that they meet the relevant standards and requirements.

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