See how a conical camera assembly with nested air intake channel and porous base cutouts mainta
A dual-chamber hydraulic ram moves grate bars into disassembly position, cutting maintenance time and improving grid availability.
Relative pivoting and longitudinal grate-bar motion clear combustion residues from air gaps, preserving airflow and combustion efficiency.
A segmented, lockable grate border compensates thermal expansion to keep waste-incineration grates tight and block uncontrolled primary air inflow.
A modular combustion grate integrates structural beams and fire bars into a single assembly to advance waste efficiently.
Segmented grate stages with opposing inclinations prevent accumulation of slippery materials while ensuring complete combustion.
Real-time sensor feedback adjusts hearth movement and ash transfer rams to resolve the contradiction between waste reduction efficiency and device complexity.
Single-sided air slots prevent metal particles from jamming the grate bar head, ensuring stable ventilation and reducing thermal wear on the running surface.
A grate block head piece attaches to a base element via welded metal pins through aligned openings.
Top-inserted coupling elements lock grate bars via pins, eliminating scaffolding needs during maintenance.
Flue gas channel routes hot exhaust from waste incinerator to main boiler, raising thermal efficiency to 40% while reducing harmful emissions.
Dual waste-feeding screws mix dry and wet marine refuse to reduce installation complexity and energy consumption during onboard treatment.
Segmented cast separation elements with tubular water cooling lines prevent overheating and casting defects in feed grates.
A spring-actuated front fire grate restricts rotational movement to prevent air leakage when foreign matter is caught between the seal and the moving grate.
Segmented stoker stages with opposing inclinations convey slippery waste while retaining it for complete combustion, eliminating premature discharge.
Segmenting the combustion chamber allows preliminary cooling of wet slag without disrupting the main furnace energy balance.