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How to choose a plastic crusher?

Technical Structure and Core Parameters
The 1200-type plastic crusher adopts a dual-shaft design with a 620mm rotation diameter and an 800mm pulley. Its power system boasts a capacity of 110,000W, capable of processing high-hardness, high-toughness ton bags and woven bags. The main body of the equipment is 4 meters long (including two high-speed friction washers), each with a power of 30kW (model 420). The high-speed rotation generates friction to remove impurities from the plastic surface, improving the purity of the recycled material. The blades are made of high-strength alloy steel and undergo a special heat treatment process, resulting in significantly better wear resistance than ordinary steel, reducing the frequency of replacement during long-term use.

 

Integrated Crushing and Washing Process
The equipment operates in two stages: crushing and washing. In the crushing stage, the dual-shaft blades cross-shear, rapidly breaking down large-sized plastics into 5-10cm fragments. In the washing stage, the rotating brushes of the high-speed friction washers and the impact of water flow remove oil, dust, and other adhering substances from the plastic surface. These two stages work together, allowing a single unit to complete the entire process from coarse crushing to deep washing, reducing material transfer links and improving processing efficiency. Its design supports customized processing, allowing adjustment of blade spacing and rotation speed according to the thickness and hardness of different materials, adapting to various sizes of ton bags and woven bags.

 

Performance Advantages for Industrial Applications

Compared to traditional crushing equipment, the 1200 model excels in durability and efficiency. A high-power motor can handle continuous high-load operation, and a one-year warranty covers core components, reducing user maintenance costs. The equipment adopts a modular design, allowing for quick replacement of wear parts such as blade assemblies and pulleys, minimizing downtime. In waste plastic recycling scenarios, its processing capacity can reach several tons per hour, meeting the needs of large-scale production; in packaging material processing scenarios, by adjusting cleaning parameters, the physical properties of the plastic can be preserved, facilitating subsequent granulation or remanufacturing.

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