Code: SE-DDC-YDK-404

Drum Detacher-C Inner Drum Rotor

A precision-balanced inner drum rotor designed to ensure efficient detaching performance and stable material flow in the Drum Detacher-C.

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The Drum Detacher-C Inner Drum Rotor is the core rotating component responsible for effective loosening and detaching of compacted flour and semolina particles. Operating inside the drum housing, this rotor generates controlled impact and movement, ensuring uniform product separation while maintaining material integrity.

Manufactured from high-strength, wear-resistant materials, the inner drum rotor is dynamically balanced to minimize vibration and mechanical stress during continuous operation. Its robust construction supports stable rotational performance, consistent detaching efficiency, and long service life. Fully compatible with Drum Detacher-C systems, this rotor ensures reliable operation, reduced maintenance requirements, and optimal milling performance.

Drum Detacher-C Inner Drum Rotor
Spare Parts Catalog for This Machine

Drum Detacher-C Inner Drum Rotor

Catalog File Size (PDF) : 4 KB Download Catalog
Core Rotating Detaching Component

Core Rotating Detaching Component

A heavy-duty inner drum rotor engineered to deliver stable rotation and consistent detaching efficiency in the Drum Detacher-C.

The Drum Detacher-C Inner Drum Rotor plays a central role in the detaching process by providing controlled rotational movement inside the drum chamber. Its precisely engineered structure ensures uniform impact on compacted product particles, supporting consistent loosening without damaging the material structure. Designed for demanding milling environments, the rotor’s balanced construction reduces vibration, protects bearings and drive components, and contributes to smooth machine operation. Its durable materials and optimized geometry support extended service life and reduced maintenance downtime. Fully compatible with Drum Detacher-C machines, this inner drum rotor is essential for maintaining high detaching performance and overall process stability.