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![]() | Product Introduction |
The ALVA 800 twin-shaft shredder is a shear-type shredding equipment designed for solid waste treatment. It adopts a twin-shaft drive structure, with two parallel tool shafts rotating in opposite directions. The tools on the shafts interlock with each other, exerting continuous shearing and tearing force on the materials.
The equipment features a robust frame and a feeding hopper suitable for different forms of incoming materials. It is equipped with a control system that supports automatic operation, which can adapt to changes in material properties and ensure stable operation. It is mainly used in the pretreatment stage of waste recycling, reducing the volume of materials and preparing them for subsequent processing.
![]() | Product Display |

![]() | Product Advantages |
The twin-shaft drive configuration delivers high torque at low speed, providing powerful shearing force for tough and bulky materials. The interlocking cutters continuously tear and reduce materials into uniform pieces, making it suitable for primary shredding of various solid waste streams. This system ensures stable performance even under variable feed conditions, supporting consistent output for downstream processing.
Built with a robust frame and wear-resistant components, the machine is engineered for long-term continuous operation in industrial environments. The design incorporates reinforced structural elements and reliable transmission parts to withstand heavy loads and demanding applications. It is equipped with overload protection mechanisms to prevent damage from foreign objects or excessive material loads, enhancing operational safety and equipment lifespan.
The modular structure allows for easy access to key components, simplifying routine maintenance and cutter replacement. The control system supports adjustable operating parameters to adapt to different material types and processing requirements. The machine is designed for quick setup and integration into existing waste recycling lines, minimizing downtime and maximizing overall operational efficiency.