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C92K hydraulic die forging CNC hammer forging of automotive control arms

As a critical safety component of the chassis, the automotive control arm has extremely high requirements for strength and lightweight design. Traditional forging equipment struggles to precisely c...
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As a critical safety component of the chassis, the automotive control arm has extremely high requirements for strength and lightweight design. Traditional forging equipment struggles to precisely control the forming process, resulting in high scrap rates and significant die wear. With the transformation of forging equipment from pneumatic and steam-powered systems to electro-hydraulic and CNC-controlled systems, CNC fully hydraulic forging hammers have become the ideal equipment for producing such complex-shaped precision forgings.

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Equipment Selection: Based on the size and material of the control arm (e.g., aluminum alloy or high-strength steel), select a hammer type with appropriate striking energy (e.g., common 125KJ or 250KJ levels).
Process Optimization: Utilize the “light and heavy strike” combination function of the CNC hammer to optimize the striking sequence, reducing defects such as incomplete filling or folding.
System Maintenance: Regularly check the sealing of the hydraulic power system and the sensor accuracy of the CNC system to ensure the stability of striking energy.
Automation Upgrade: It is recommended to use a forging robot and an automatic lubrication system to achieve large-scale standardized production of the control arm.

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