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![]() | Product Introduction |
The Polyurethane Volume Reducer is applied in Shandong ALVA waste refrigerator dismantling line, mainly used for volume reduction and compaction treatment of polyurethane foam and foamed materials generated during dismantling. Through physical extrusion and molding processes, the equipment significantly reduces the bulk density of polyurethane waste, facilitating subsequent transportation and storage. It effectively lowers the storage cost and transportation expense of solid waste in the dismantling line.
Featuring a structure suitable for continuous operation in the dismantling line, the equipment operates stably and can be seamlessly connected with the front and back processes such as crushing and sorting, meeting the technical requirements of the resource recovery process.
![]() | Product Display |

![]() | Product Advantages |
Through high-pressure compaction technology, the equipment significantly reduces the volume of polyurethane foam generated during the dismantling of waste refrigerators. This minimizes storage space occupation, shortens inventory cycles, and lowers transportation frequency and costs, thereby improving the economic efficiency of overall material handling.
Featuring a mature hydraulic and mechanical structure, it matches the high-load and continuous production rhythm of the dismantling line. The equipment operates stably with low failure rates, enabling long-term uninterrupted operation. It ensures seamless connection between the polyurethane volume reduction process and upstream and downstream production lines, safeguarding overall operational efficiency.
With a compact layout, the device requires minimal installation space, adapting to the production line's process layout requirements. It can be easily integrated with conveying, crushing, and other systems of the dismantling line, connected to the automated control network for convenient operation and maintenance, thereby enhancing the overall automation level and site utilization rate of the production line.