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Working Principle of Manure Removal Equipment

The working principle of manure removal equipment primarily relies on mechanical transmission and automated control, utilizing components such as scrapers, chains, or screw conveyors to collect and transport manure.


The working principle of manure removal equipment primarily relies on mechanical transmission and automated control, utilizing components such as scrapers, chains, or screw conveyors to collect and transport manure. The following explains common types:

Towed and Self-Propelled Manure Scrapers: These devices typically feature a motor driving a reducer, which transmits power via sprockets or V-belts to the main drive wheel. The drive wheel's friction with the traction rope propels the manure scraper back and forth within the manure trench. The scraper automatically lowers to collect manure during the forward stroke and raises to minimize resistance during the return stroke. Some self-propelled models incorporate crescent-shaped sliders for automatic height adjustment during floor scraping.

 

● ‌Manure Scrapers and Automatic Manure Cleaners:‌ Core components include motors, gearboxes, scraping blades, traction ropes, and corner pulleys. The motor outputs low-speed power after reduction, driving the scraper along a closed loop. Scrapers are often made of stainless steel, with the loop positioned and redirected by corner pulleys to achieve continuous manure removal. Automated models integrate intelligent control systems supporting scheduled cleaning and fault alerts.‌

 

‌● Solid-Liquid Separation Equipment:‌ Utilizing screw compression as the core technology, manure is conveyed via a cutting pump into a screen. A rotating stainless steel screw shaft squeezes and dewaters the material. Screen aperture size controls solid particle size, while adjusting screw speed and pressure alters the moisture content of the final product. The processing flow includes manure collection, solid-liquid separation, and product classification. Some equipment incorporates bio-evaporation bed technology to enhance efficiency.‌

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