Steel slag is an unavoidable by‑product generated during steel‑making. Containing large volumes of metallic iron particles, steel‑slag processing plants rely heavily on magnetic separation to reclaim reusable ferrous materials, turning industrial waste into saleable resources. Yet many processing sites run into a common bottleneck right before magnetic separators: uneven feeding. If bulk steel‑slag piles rush onto magnetic rollers in thick layers, magnetic fields cannot fully penetrate material layers. Valuable iron fragments stay mixed within non‑magnetic slag, lowering metal recovery rates and eating into plant profits. This is where a well‑configured electromagnetic vibrating conveyor brings tangible improvements to your slag‑handling workflow.
We have further optimized our electromagnetic vibrating conveyor specifically for steel‑slag applications. A specially‑designed conical material‑distributing structure sits directly under the feeding inlet. When abrasive steel‑slag falls down from upstream hoppers, this cone‑shaped component disperses incoming material sideways. It eliminates local material accumulation and prevents thick stacking at one spot on the conveying trough. Combined with soft electromagnetic vibration, steel‑slag spreads evenly along the full width of the vibrating conveyor trough before discharging towards magnetic separators. No material surges, no thick lumpy piles hitting the magnetic roller.
For steel‑slag processing environments filled with sharp, highly abrasive particles, reliability counts for everything. Our electromagnetic vibrating conveyor has no rotating bearings or gearboxes found on standard motor‑type vibrating conveyor equipment. With fewer wearing parts, maintenance workload drops significantly for continuous slag‑recycling operations. Operators can adjust feeding throughput smoothly through control panels to match magnetic separator capacity, adapting to fluctuating steel‑slag feed volumes coming from crushing circuits.
call us :
008617855911791 e-mail : sales@vrvibratory.com