UBC Aluminum Can Shredder Machine

UBC Aluminum Can Shredder Machine

The UBC aluminum can shredder machine is one of the most popular crushing machines among users. It is custom-designed according to the properties and structure of waste beverage cans.

  • Capacity : 500kg-5000kg/h
  • Raw Materials : Plastics, cans, tyres, wood, metal, waste rubbish, etc.

Products Detail

The UBC aluminum can shredder machine stands as one of the most favoured crushing devices among users. Tailored to the specific properties and structure of waste beverage cans, it permits the integration of diverse equipment configurations. Boasting high adaptability and production efficiency, it accommodates varied client process requirements. Its primary function lies in shredding and tearing various metal containers into manageable chunks, facilitating subsequent recycling and transportation while enhancing smelting speed and efficiency.

The UBC aluminum can shredder machine employs a dual-shaft low-speed rotation system, utilising cutting discs to tear, rip, and slice materials. It features direct connection to a worm gear reduction motor, which can be mounted directly onto the shredder's main shaft. Power is transmitted via gear reduction to the driven shaft, causing the two sets of cutting blades on the main shaft to move in opposite directions. The helical cutting discs on the main shaft are arranged in an interlocking pattern, thereby achieving material fragmentation.

 

 

 

Raw Materials

Used pull-tab cans, beverage cans, Red Bull cans, Lulu cans, metal cans, eight-treasure porridge cans, beer cans, cola cans, metal cans, aluminium cans and similar items can be shredded rapidly. Even large paint buckets, tinplate drums, scrap metal and similar items can be shredded efficiently.  

 

UBC Aluminum Can Shredder Machine Shred aluminium cans


 

Advantageous

  1. Unique cavity design enhances crushing efficiency: Featuring a specially engineered involute cavity profile, materials strike the impact plate vertically before being redirected towards the feed inlet within the hammer impact zone. This increases impact frequency, significantly improving crushing performance and producing superior particle shape. The incorporation of heavy-duty rotors increases rotational inertia while boosting material linear velocity, thereby enhancing operational efficiency.
  2. Simple and Convenient Hydraulic Operation System: A multifunctional, fully hydraulic control system enables complete hydraulic adjustment of discharge particle size. Replacement of wear parts is greatly facilitated. Liner plates are secured with high-strength bolts, allowing direct external replacement. This reduces labour and time costs associated with liner plate replacement. Precision positioning devices on the bearing housings minimise operational difficulty when adjusting bearing positions during maintenance. The integrated hammer plate design ensures secure fixation while facilitating quicker and more convenient hammer plate installation and removal.
  3. Extended Service Life: The machine body is constructed from high-strength steel, with hammer plates made from highly wear-resistant materials. The rotor utilises low-temperature resistant high-strength steel, and bearings are sourced from internationally renowned brands. High-quality raw materials form the foundation for prolonging the crusher's operational lifespan. Thickened liners can be employed. Bolts rotate from the exterior inwards. This prevents bolt wear causing side guard plate loosening, ensuring more thorough utilisation of the protective plates and significantly extending service life.
  4. Highly efficient and stable operation: The heavy-duty rotor employs an integral welding process, delivering high precision and strong impact resistance. This reduces current fluctuations during operation. The contact surfaces between the lower frame and bearing housing are manufactured using an integral process to ensure machining accuracy. Both the impact plates and impact frame contact surfaces undergo precision machining.

     

Technological Process

 

Model Size(mm) Feed inlet size(mm) Power(kw)
VTSSJ2180 2930x1190x1930 800×510 7.5+7.5
VTSSJ3910 2930x1240x920 1240×920 55+55+11
VTSSJ3580 3300X1300X2260 840×800 22+22
VTSSJ40130 3600x2260x2670 1350×95 37+37
VTSSJ46150 5880x2000x2730 1570×1080 90+90
VTSSJ61180 5800x3770x4550 1800×1800 55+55
VTSSJ64250 7200x2200x3660 2450×1520 132+132
VTSSJ7272 7200x2200x3660 1800×1800 55+55

 

         

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