STEEKOR

KINETIC QUANTUM ENGINE

A dual-branch kinetic engine for the global steel industry. Reads the kinetic signature of every furnace, rolling mill, and casting line — predicting refractory degradation, thermal-cascade signatures, vibration-stress cascades, and casting-breakout trajectories before they cascade into non-productive time or equipment damage.

OPERATIONAL BRANCHES

FURNACE

Blast Furnaces, EAFs & Basic Oxygen Furnaces

Reads the kinetic signature of the furnace — thermal flux, slag entropy, energy intensity. Predicts refractory degradation and thermal-cascade signatures before they compromise furnace integrity or waste energy.

Thermal FluxSlag EntropyEnergy IntensityRefractory WearGas Flow RateTap Temperature
FURNACE STRESS — MAINTENANCE DIRECTIVE REQUIRED

MILL

Rolling Mills, Continuous Casting & Forming Lines

A kinetic defense layer for the rolling mill. Detects vibration-stress cascades, roll-damage signatures, and casting-breakout trajectories — predicting mill stress before equipment is damaged or throughput stalls.

Vibration DeviationRolling Load PressureCasting VelocityStrip TensionRoll WearThroughput Rate
MILL STRESS — SLOWDOWN DIRECTIVE REQUIRED

ENGINE CAPABILITIES

Refractory Longevity

Tracks thermal flux and refractory wear to predict lining degradation before it compromises furnace integrity.

Vibration Harmonics

Monitors mill vibration deviation to predict roll-damage and bearing-failure cascades before they stall production.

Casting Continuity

Reads casting velocity and strip tension to predict breakout signatures before they ruin a cast.

Energy Optimization

Tracks energy intensity and gas flow to predict fuel-waste signatures before they compound across the furnace campaign.

DEPLOYMENT

Rapid Connection. Controlled Deployment.

How STEEKOR Integrates

STEEKOR's API-ready architecture enables rapid connection to existing SCADA, DCS, and MES systems across blast furnaces, electric arc furnaces, and rolling mills. Full production deployment typically takes 6–12 weeks, depending on plant complexity, sensor coverage, cybersecurity requirements and operational scope.

1

CONNECT

Establish the secure API and telemetry connection to your SCADA / DCS / MES bridge.

2

MAP

Map furnaces, mills, casters, rolls and sensors to the kinetic model.

3

BASELINE

Develop the steel plant's kinetic operating baseline and configure detection parameters.

4

VALIDATE

Test alerts, directives, audit receipts and cybersecurity controls.

5

DEPLOY

Train furnace and mill operators and move the approved environment into production.

HARDENED AT THE GATE

Every inbound telemetry reading is authenticated against a per-license API key and passed through a standardized ingest security layer that enforces input validation, rate limiting, and replay protection. Spoofed, duplicated, or malformed signals are rejected before they ever reach the kinetic kernel — ensuring the engine only acts on verified, trustworthy data.

AUDIT RECEIPTS

Every directive the engine issues is sealed with a deterministic audit receipt — an immutable provenance packet containing the input hash, kinematic snapshot, the exact classification rule fired, the engine version, and a timestamp. This receipt enables full compliance replay: regulators and operators can reconstruct exactly why a directive was issued, long after the event occurred.

STEEKOR overlays compatible existing infrastructure. Deployment timelines may vary based on data availability, integration requirements, plant / corporate approvals and the condition of the existing SCADA / DCS / MES environment.

Institutional Licensing

STEEKOR is available as an enterprise license for qualified operators. All directives include quantum-weighted probability clouds and audit receipts for compliance replay.

Request Qualification