Product Introduction
Single Shaft Industrial Shredders is an industrial-grade crushing device that uses a single rotating main shaft equipped with movable blades (or hook blades) combined with a fixed bottom blade (fixed blade) to shear, tear, and compress materials, thereby reducing the size of large, hard solid waste.

Product Parameter
|
Model |
Hopper size |
Dimensions |
Weight |
Power |
|
W-SD800 |
1080*800mm |
2800*1800*2090mm |
4150kg |
37kw |
|
W-SD1000 |
1080*1000 |
2800*1980*2090 |
4300kg |
45kw |
|
W-SD1200 |
1080*1200mm |
2800*2500*2140mm |
4900kg |
55kw |
Core Design Features
Single Spindle: The core of the equipment is a single, horizontally placed, heavy-duty spindle.
Moving Blade Design:
- The spindle is equipped with multiple blades (usually multiple claws or disc-shaped blades), each with detachable, rotatable hook-shaped cutters.
- This design allows the blades to shift slightly when encountering uncrushable materials, protecting the spindle and motor.
- The blades are made of high-strength alloy steel and can be replaced after wear or reused by rotating the blades.
Fixed Blade (Bottom Blade): Located at the bottom of the feed hopper, it forms a shearing angle with the rotating moving blades, working together to "shred" the material.
Screen: Most single-shaft shredders have a replaceable screen at the outlet; its aperture determines the final output size. Material is discharged only when it is sheared to a size smaller than the screen aperture.
Pushing System:
- This is one of the key components. It typically consists of a hydraulically driven pusher (piston).
- The feeder continuously and forcefully presses the material against the rotating cutter shaft, ensuring efficient and uniform shredding and preventing the material from "spinning" or "bridging" within the hopper.
Heavy-duty structure: The entire structure is welded from thick steel plates to withstand high torque and high impact loads.

Main Application Materials
Single Shaft Industrial Shredders are renowned for their high torque, strong shearing force, and ability to handle irregularly shaped parts and tangled materials, making them particularly suitable for:
1)Large solid waste: Tires, large rolls of film, ton bags, furniture.
2)Metal scrap: Oil drums, appliance casings, aluminum profiles, thin metals.
3)Plastics: Plastic drums, machine head stock, pipes, thick-walled products, stretch film (with some anti-tangling ability).
4)Timber: Pallets, construction templates, tree roots, large pieces of timber.
5)Rubber: Whole tires, rubber blocks.
6)General industrial waste (RDF/SRF preparation): Used for preparing alternative fuels.


Screen size can be customized
Key Advantages
Strong Capability for Handling Irregularly Shaped Materials: Hook blade design effectively grips and tears irregularly shaped materials.
High Adaptability: Tolerates materials containing certain impurities (such as small amounts of metal).
Efficient Feeding System: Forced feeding avoids inefficient idling.
Limitations and Considerations
- Relatively Lower Processing Speed: Throughput per unit time may be lower compared to twin-shaft or quad-shaft shredders.
- Higher Power Consumption: Energy consumption may be higher when processing certain materials due to the high torque design.
- Blade Maintenance: Although the blades are durable, maintenance and replacement are still routine, especially when processing highly abrasive materials.
- Initial Investment:Single Shaft Industrial Shredders; initial purchase cost is typically high.
- Thin, sheet-like materials may "spin": Pure sheet-like, thin materials may spin inside the hopper and require forced feeding via a pusher.
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