Imaging-based positioning aligns material supply and an offset rotating mixer to improve soil mixing ratios while reducing component wear.
Pre-crushing plus pressurized CO2 and water selectively fractures recycled concrete cement paste, enabling cleaner fraction separation and reuse.
Removable cover sections and replaceable wear parts cut grinder maintenance time while improving plaster separation and service life.
A cyclone with an impeller and pulsating media separates mixed waste by density, improving recyclable recovery while cutting labor and landfill waste.
Vibrating sieves remove inorganic impurities before filtration, reducing cloth clogging and supporting gypsum filtrate recirculation.
A cyclone impeller uses centrifugal, vertical, and pulsating media flows to recover light and heavy waste fractions.
An impeller-driven cyclone uses tangential flow, stratification, and dewatering to recover cleaner recyclable fractions at high throughput.
Segmented screw conveyors decouple rapid discharge from separator processing, maintaining fluid homogeneity and reducing tank height.
Low-temperature torrefaction reduces construction debris volume by 90 percent, lowering landfill tipping fees and extending site life.
Pneumatic conveying system directs construction waste into separate containers using selective shut-off means.
Replacing hazardous chemical extraction, this method uses mechanical crushing and gravity-based separation to recover asphalt while eliminating explosion risks.
Accelerometric sensors detect vibration drops from material overload, prompting the control system to increase shaft speeds and prevent machine shutdown.