Here we take single shaft shredder as an example. Materials enter from A (material Inlet) and fall into B (Crushing Chamber). Next, C Pusher constantly pushes materials in contact with D Rotor. D rotates at high-speed shears and compresses materials in assist of counter knives. Through tearing, fracturing, shearing, processed materials are broken down in the desired size and then are released via E (Screen). The Working Principle of Shredder Machine is straight forward, as explained. Cross-cut shredder is not explained in this article.
Belt conveyor and material discharge blower are available based on the customer’s requirement. They simplify how shredder machine works. Other options such as enclosed infeed hopper, special screens, special blade and special rotor can be achieved.
The core part of the industrial shredder, rotor, is made of cold work die steel with highlights of high wearability, resistance to corrosiveness, and fine arrangement of knives. All these highlights ensure a sharp cutting edge, achieving a high quality of output. This fine design ensures how shredder machine works. Other essential components include transmission system (gear reducer and motor), bearings, screen, safety system, control system.
With our shredder machines‘ great reliability and their ability to handle unshreddable items without problems, they excel in a wide range of applications. where trials and tests with customers’ specific materials are simulated under practical conditions. Our emphasis is always on the customer and on fulfilling each task in the best possible manner.
The GEP Ecotechtechnology centre enables us to gain important experience and data so we can offer the ideal shredding solution for any given task to our dear customers. The centre shows how shredder machine works best for different materials. Hope our readers understand The Working Principle of Shredder Machine.
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Shredding & Recycling Solution for Different Materials
Benefiting from deep technical strength and years of accumulated experience, GEP Ecotech optimizes the processing technology of different materials to help users improve production capacity, reduce costs, improve safety, and increase profitability.
Paper, metal, plastic, glass, battery, etc.
Mattresses, sofas, wardrobes, chairs, wooden doors, etc.
Rubber tires, automobile tires and other tire rubber products
Mechanical industry cutting chips, grinding debris, waste sand, etc.
Disposable medical devices, post-operative waste products, expired drugs, etc.
Biomass synthesis of corn stalks, straws, shells, etc.
Food waste such as kitchen, bones, leftovers, and vegetable roots
Frozen meat, dead animals, etc.