EBT Taphole Refractory

Electric Arc Furnace Flow-Control Refractories

EBT Taphole Refractory System

Refractory sets for eccentric bottom tapping systems, including surrounding blocks, channel bricks and channel end bricks. Different refractory grades can be selected according to the wear intensity of the channel and end-brick zones.

3 Main Components Surrounding blocks, channel bricks and channel end bricks
Wear-Based Selection Material grades selected according to local wear intensity
Eccentric bottom taphole refractory blocks and channel bricks
System Overview

Refractory Components for Eccentric Bottom Tapping

An EBT taphole set is a coordinated refractory assembly installed around the eccentric bottom tapping channel. Its components form a stable tapping passage and protect the surrounding furnace-bottom refractory structure.

Wear is not uniform throughout the complete assembly. For this reason, the channel bricks and the channel end brick may be produced from different refractory grades according to their local service conditions.

Accurate component geometry and assembly fit
Replaceable bricks for maintenance and relining
Material selection according to localized wear
Production based on approved technical drawings
EBT taphole refractory set
System Components

Main Components of an EBT Taphole Set

The complete set combines structural and flow-channel refractory components that work together as one tapping assembly.

01

Surrounding Blocks

Refractory blocks installed around the taphole channel to support the assembly, protect the furnace bottom and maintain the required installation geometry.

02

Channel Bricks

Cylindrical or specially shaped bricks forming the main tapping passage. Their material quality is selected according to expected wear and operating conditions.

03

Channel End Brick

The refractory component positioned at the end of the channel assembly. A different material grade may be selected when its wear exposure differs from the main channel.

Material Selection

Refractory Grade Selection by Wear Intensity

Material selection should be performed separately for each component rather than assuming one refractory grade for the complete set.

Wear Severity

Local erosion, thermal cycling and mechanical wear determine the required refractory quality for the channel and end-brick zones.

Dimensional Accuracy

Bore diameter, brick dimensions and mating surfaces should conform to the approved EBT assembly drawings.

Maintenance Strategy

Brick grade and component arrangement should support the intended tapping campaign and planned replacement interval.

Technical Summary

EBT Taphole Components and Functions

Component Primary Function Selection Consideration
Surrounding Blocks Support and protect the EBT assembly within the furnace bottom. Geometry, installation fit and compatibility with adjacent bottom refractories.
Channel Bricks Form the main passage through which molten material is tapped. Bore dimensions, wear intensity and required campaign performance.
Channel End Brick Completes the outlet end of the refractory tapping channel. End-zone wear, component shape and selected refractory grade.
Technical note: The supplied product page identifies the component arrangement but does not provide chemical composition, physical properties, dimensions or individual refractory grades. These details should be confirmed from the approved technical data sheet and the customer’s EBT drawings.
Quotation Requirements

Information Needed for Technical Review

Complete technical information is required to confirm component geometry, refractory quality and supply scope.

EAF manufacturer, model and furnace capacity
EBT taphole and furnace-bottom drawings
Channel bore diameter and brick dimensions
Required surrounding blocks and channel components
Current refractory grades and wear history
Expected tapping campaign and replacement interval
Required quantities, packaging and delivery schedule
Destination country and required documentation

Request an EBT Taphole Refractory Quotation

Send us the EAF model, EBT drawings, bore dimensions, component list, current refractory grade, required quantity and destination country for technical and commercial review.

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