See how stacked refractory slabs with integrated fuel gas and combustion air passageways reduce
A 3D control network and brick receiving platform standardize coke oven masonry, improving precision, cleanliness, and rework control.
Precast refractory blocks, mortar, and castable material enable hot coke oven roof repair with less downtime, lower labor exposure, and durable thermal stability.
A rail-mounted slewing crane with a truss jib lifts and installs coke oven components from outside while staying stable on narrow rails.
Outward-flaring curved guide plates help align heavy coke oven precast blocks during lowering, preventing battery-direction misalignment.
Precast blocks are lowered and shifted into the under-rail region so coke oven combustion chambers can be rebuilt without rail or wire interference.
This case combines coke oven corbel tiers and gunblock sections in one unit, reducing seams, leakage, and repair time.
Thermally-volume-stable monolith crowns maintain structural integrity during cooling, enabling safe shutdown of horizontal heat recovery coke ovens.
Bonded modular segments reduce on-site assembly time and labor costs while maintaining structural integrity in coke ovens.
Replacing Portland cement with a P2O5 oxide system stabilizes under-load shrinkage in silica-based precast refractory blocks while maintaining hot strength.
Rotating grate adjusts oxidation zone position in downdraft gasifiers to manage feedstock flow through vertically positioned tubes.
Dovetail joint systems connect precast refractory panels to form gas flue spaces, reducing brick variety and repair downtime in coke ovens.
Segmented roof modules allow durable repairs during operation, eliminating downtime and reducing labor intensity.