Ground equipment in the anode assembly workshop
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The autogenous mill is primarily used to process electrolyte from the assembly workshop and all other sources. After being crushed to the required particle size, the material is transferred to the finished-product silo and then conveyed by dedicated vehicles to the electrolysis workshop for use as thermal insulation material.
The Loading and Unloading Station is a large-scale set of equipment for loading and unloading anode assemblies. Its function is to load the spent anode rod assemblies from the anode pallets onto the production line, unload the finished anodes, and enable automated production at the station.
The Bath Cleaning Machine is used to remove electrolyte adhering to the surface of the spent anode, and its fully automated, mechanized operation saves a significant amount of labor.
The residual‑anode shot blasting machine is primarily used to remove the loose, high‑sodium carbon layer from the surface of steel‑claw residual anodes. The equipment can be operated manually or connected to the on‑site PLC for automated production.
As a critical conductive component in electrolytic aluminum production, the cleaning technology for steel claws is continuously advancing toward higher efficiency and lower energy consumption. The combined application of chain‑swinging cleaning and shot‑blasting has emerged as an important approach to enhancing cleaning efficiency while reducing energy use.
In recent years, environmental policies have continued to tighten, imposing increasingly stringent environmental requirements across all stages of industrial production. As a critical production unit in industries such as aluminum smelting, the anode workshop faces substantial pressure to upgrade its environmental performance, thereby accelerating its modernization and transformation.
In recent years, the overall export of electrolytic aluminum anode assembly production lines has been accelerating, with domestically produced equipment steadily gaining recognition in overseas projects thanks to its technological prowess and localized service capabilities.
In recent years, technologies for treating spent anodes in the aluminum smelting industry have undergone continuous upgrades, with integrated shot-blasting and resource-recovery systems emerging as a key focus of the sector.
Phosphide‑iron ring pressing and demolding technology, a critical process in the anode assembly stage of aluminum electrolysis, has undergone continuous refinement in recent years, enabling a highly efficient and energy‑saving transformation.
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