Cold Ramming Paste manufacturing facility

Comprehensive Technical Guide

Cold Ramming Paste
The Complete Guide

From material composition to blast furnace applications -- everything engineers, procurement managers, and metallurgists need to know about cold ramming paste, its grades, specifications, and performance criteria.

Blast Furnace Taphole Repair Carbon Lining Ironmaking Refractory

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≥2.5

Bulk Density (g/cm³)

≤0.5%

Moisture Content

1200°C+

Operating Temperature

25+

Years Experience

Section 01

What Is Cold Ramming Paste?

Cold ramming paste is a carbonaceous monolithic refractory material that is mixed, formed, and applied at ambient temperature -- without the requirement for pre-heating before installation. It is composed primarily of electrically calcined anthracite, graphite, tar pitch binders, and various additives engineered to deliver specific thermal, mechanical, and chemical-resistance properties.

The term "cold" distinguishes it from hot ramming paste, which requires heating to 80-120 °C to achieve workable plasticity. Cold ramming paste achieves the necessary plasticity through formulation -- typically using liquid or semi-liquid pitch binders combined with plasticizers -- making it safer and more convenient to handle on the job site.

In modern blast furnace construction and maintenance, cold ramming paste is most widely used to fill the gaps between pre-formed carbon blocks in the hearth and taphole areas, acting as a monolithic jointing material that, after sintering during furnace heat-up, becomes an integral part of the lining system.

Key Advantages at a Glance

  • No heating required during application
  • Excellent adhesion to carbon block surfaces
  • High post-sintering density and strength
  • Superior resistance to molten iron and slag penetration
  • Reduced on-site occupational hazards vs. hot paste
  • Compatible with all major carbon block grades
  • Long shelf life under proper storage conditions
  • Formulations available for varying thermal conductivity

Section 02

Raw Materials & Composition

The performance of cold ramming paste is fundamentally governed by the quality and proportion of its raw materials. Understanding the composition allows engineers to match the paste grade precisely to the demands of a given furnace zone.

Electrically Calcined Anthracite (ECA)

The primary aggregate. ECA provides the carbon matrix with high density, low porosity, and resistance to oxidation. Calcination temperatures exceeding 1800 °C drive off volatiles and enhance thermal stability.

Graphite

Natural or synthetic graphite is added to improve thermal conductivity, lubricity, and workability. Higher graphite content correlates with better heat dissipation but may affect mechanical strength.

Tar Pitch Binder

Coal tar pitch serves as the binding medium. Modified pitches with controlled softening points enable ambient-temperature workability. During sintering, pitch carbonizes to form additional carbon bonding.

Plasticizers & Additives

Anthracene oil, petroleum-based plasticizers, and proprietary additives adjust consistency, extend shelf life, improve flow under ramming pressure, and control the sintering shrinkage profile.

Fine Carbon Filler

Carbon black or coke fines fill void spaces in the aggregate matrix, increasing packing density and reducing porosity in the sintered body -- critical for alkali and iron penetration resistance.

Silicon Carbide (Optional)

Premium grades incorporate SiC additions to improve oxidation resistance, thermal shock resistance, and wetting behavior -- particularly valuable in taphole zone applications.

Section 03

Types & Grades of Cold Ramming Paste

Cold ramming paste is available in several distinct grades, each optimized for specific positions within the blast furnace lining system. Selecting the correct grade is critical to achieving the target campaign life and minimizing the risk of premature lining wear.

Grade 01

Standard Anthracite-Based Cold Ramming Paste

Most Common

Formulated predominantly from ECA aggregate with coal tar pitch binder. Offers a balanced combination of density, porosity, and mechanical strength. This is the workhorse grade for general hearth bottom and sidewall gap filling in blast furnaces of all sizes.

Carbon Content: ≥82% Ash: ≤8% Applications: Hearth bottom, sidewall joints
Grade 02

Semi-Graphitic Cold Ramming Paste

High Thermal Conductivity

Blends ECA with 20-35% graphite to achieve significantly improved thermal conductivity. This grade supports effective heat extraction through the furnace shell -- a key strategy in maintaining the protective "frozen layer" of solidified iron that shields the carbon lining from excessive wear.

Thermal Conductivity: ≥8 W/(m·K) Graphite: 20-35% Applications: Taphole surrounds, lower sidewall
Grade 03

Full Graphitic Cold Ramming Paste

Premium Grade

Utilizes high-purity synthetic or natural graphite as the primary aggregate (>50% graphite content). Delivers maximum thermal conductivity and lubricity, ideal for ultra-large blast furnaces (≥4,000 m³) where superior heat management is paramount to campaign life extension.

Thermal Conductivity: ≥15 W/(m·K) Graphite: >50% Applications: Large BF hearth systems
Grade 04

Microporous Cold Ramming Paste

Low Permeability

Engineered with controlled pore-size distribution (<1 µm median pore diameter) that physically prevents molten iron and alkali from penetrating the lining. Contains functional additives that react with iron oxides to generate a dense, impermeable microstructure upon sintering.

Median Pore Size: <1 µm Apparent Porosity: ≤13% Applications: Alkali-rich environments, high iron pressure zones
Grade 05

SiC-Enhanced Cold Ramming Paste

Oxidation Resistant

Incorporates silicon carbide particles within the carbon matrix to enhance oxidation resistance, thermal shock stability, and iron-wetting resistance. Particularly suited for taphole block surrounds and areas exposed to frequent thermal cycling during tapping operations.

SiC Content: 10-25% MOR: ≥8 MPa Applications: Taphole zones, areas with thermal cycling

Explore Our Full Product Range

Each grade is available in multiple consistency classifications (soft / medium / stiff) to match your ramming equipment and joint geometry.

View Product Catalogue →

Section 04

Technical Specifications

The following table presents typical specification parameters for cold ramming paste grades. Values are indicative of as-sintered properties unless otherwise noted. Detailed test reports and third-party certification are available upon request.

Property Standard Semi-Graphitic Microporous SiC-Enhanced
Fixed Carbon (%) ≥82 ≥85 ≥83 ≥78
Ash Content (%) ≤8 ≤6 ≤7 ≤10
Moisture Content (%) ≤0.5 ≤0.5 ≤0.5 ≤0.5
Bulk Density (g/cm³) ≥1.55 ≥1.50 ≥1.60 ≥1.58
Apparent Porosity (%) ≤18 ≤16 ≤13 ≤15
Cold Crushing Strength (MPa) ≥25 ≥22 ≥28 ≥30
MOR at RT (MPa) ≥5 ≥4.5 ≥6 ≥8
Thermal Conductivity at 600°C [W/(m·K)] ≥5 ≥8 ≥6 ≥7
Linear Change After Sintering (%) -1.0 ~ +0.5 -0.8 ~ +0.5 -0.8 ~ +0.3 -0.5 ~ +0.5

* All sintered properties measured after treatment at 1000 °C in nitrogen atmosphere. Values are typical and subject to grade customization. Contact our technical team for project-specific data sheets.

Section 05

Applications & Use Cases

Cold ramming paste is a versatile monolithic material deployed across multiple zones and industries wherever carbon lining integrity is critical to process efficiency and safety.

01

Blast Furnace Hearth Lining

The most critical application. Cold ramming paste fills the construction joints between large carbon blocks in the hearth bottom and sidewalls of the blast furnace. After sintering, the paste becomes monolithic with the blocks -- eliminating pathways for iron infiltration that could cause catastrophic lining failure.

Proper joint geometry (typically 3-10 mm width), paste grade selection, and ramming technique are all essential to achieving a watertight hearth system capable of 10+ year campaign life.

02

Taphole Block Surrounds

The taphole area is the most thermally and mechanically stressed zone of the hearth. Cold ramming paste (typically SiC-enhanced or semi-graphitic grade) is used to bed and surround the taphole block assembly, ensuring gas-tight sealing and mechanical support during repeated tapping and plugging cycles. The paste must withstand extreme thermal cycling without cracking or delaminating.

03

Subhearth & Foundation Sealing

Between the carbon bottom and the concrete subhearth foundation, cold ramming paste provides a compliant, thermally conductive layer that accommodates differential thermal expansion, seals against gas migration, and ensures even load distribution. This layer is critical for protecting the concrete foundation from thermal degradation.

04

Electric Arc Furnace (EAF) Carbon Linings

Cold ramming paste is used in EAF bottom lining systems as a bedding and jointing material for carbon and graphite blocks. The lower thermal cycling frequency compared to blast furnaces makes standard or semi-graphitic grades appropriate for most EAF applications.

05

Aluminum Reduction Cells (Pot Lining)

In primary aluminum smelting, cold ramming paste (often referred to in this context as cathode paste or ramming mix) is used to line the cathode blocks of electrolytic cells. The material must resist cryolite bath penetration and remain stable at 950-980 °C bath temperatures over multi-year cell campaigns.

06

Submerged Arc Furnaces (SAF)

Used in the production of ferroalloys, silicon, and calcium carbide, SAFs rely on cold ramming paste for carbon lining joints in the hearth and sidewall areas. The paste must resist silica reduction products and maintain structural integrity under chemically aggressive slag environments.

Section 06

Installation & Construction Guidelines

Correct installation is as important as material quality. Even the highest-specification cold ramming paste will underperform if applied incorrectly. The following guidelines represent established best practice for blast furnace hearth construction.

Pre-Installation

  • Verify paste consistency grade matches joint width and ramming equipment capability
  • Clean all carbon block surfaces; remove dust, oil, and moisture
  • Bring paste to application temperature (15-35 °C); cold paste increases required ramming force
  • Inspect joint geometry; ensure design gap width is consistent (±1 mm tolerance)

During Installation

  • Apply paste in layers ≤50 mm depth; ram each layer thoroughly before adding the next
  • Use pneumatic or electric rammers; hand ramming is insufficient for dense joints
  • Ensure 100% joint fill -- any voids become pathways for iron penetration
  • Protect applied paste from rain and contamination until enclosure is complete

Sintering & Heat-Up

  • Follow furnace heat-up curve to allow controlled binder volatile release (150-400 °C zone)
  • Avoid rapid temperature rise through the plastic deformation zone (300-600 °C)
  • Full sintering and carbonization of binder occurs above 900 °C
  • Do not quench or rapid-cool the hearth after sintering is complete

Storage & Shelf Life

  • Store in sealed containers at 5-35 °C; avoid direct sunlight and freezing
  • Typical shelf life: 6-12 months from manufacturing date
  • FIFO stock rotation recommended; test consistency of stored paste before use
  • Re-test paste that has been stored >9 months before authorizing for critical applications

Section 07

Cold vs. Hot Ramming Paste

The choice between cold and hot ramming paste is a fundamental engineering decision with implications for quality, safety, logistics, and campaign performance. Understanding the differences enables procurement and construction teams to make the optimal selection.

Factor Cold Ramming Paste Hot Ramming Paste
Application Temperature Ambient (15-35 °C) 80-120 °C
Equipment Required Standard rammers Heating equipment + rammers
Occupational Safety Lower risk -- no fume heating Higher risk -- hot fumes, burn hazard
Workability Window Extended (hours) Limited (must work quickly)
Post-Sinter Density Slightly lower Slightly higher
Logistical Complexity Low -- ship and store as-is Medium -- requires heating on site
Suitability for Cold Climates Requires pre-warming Self-warming process
Industry Trend Growing adoption Declining in new projects

Industry Verdict: Cold ramming paste has become the preferred choice for new blast furnace construction globally, owing to its superior safety profile, logistical simplicity, and consistent quality. Hot ramming paste remains in use primarily for maintenance and repair applications where its higher initial density provides a narrow advantage.

Section 08

Quality Control & Testing

Rigorous quality control -- from raw material incoming inspection to finished product release testing -- is essential to ensure cold ramming paste performs reliably across the full campaign life of the furnace.

Incoming Raw Material

Fixed carbon, ash, sulfur, particle size distribution, and moisture tested for each incoming batch of ECA and graphite

In-Process Control

Mixing uniformity, binder penetration, consistency (penetrometer), and batch-to-batch reproducibility verified during production

Finished Product Release

Full sintered property testing per batch: density, porosity, CCS, MOR, thermal conductivity, and dimensional stability before shipment approval

Standard Test Methods

-- ISO 17832 / YB/T 5189 (Carbon content determination)
-- GB/T 24213 (Apparent porosity and bulk density)
-- GB/T 3074.1 (Cold crushing strength)
-- ISO 12987 (Thermal conductivity -- laser flash)
-- GB/T 14270 (Linear change after heating)
-- Internal penetrometer method (Consistency / workability)

Section 09

How to Select the Right Grade

No single grade of cold ramming paste is optimal for every situation. Use the decision framework below to narrow down your selection, then consult with our technical engineers for final specification confirmation.

1

Define the Furnace Zone

Hearth bottom joints → Standard or Microporous grade. Taphole surrounds → SiC-Enhanced. Upper sidewall → Semi-graphitic. If the entire hearth requires high thermal conductivity for freeze-lining strategy → Full Graphitic.

2

Assess Alkali Load

High-coke-rate furnaces or those using high-alkali burden materials face greater lining attack. Microporous grade with ≤13% apparent porosity is strongly recommended to limit alkali infiltration paths.

3

Match to Carbon Block Grade

Paste thermal conductivity should be within ±20% of the adjacent carbon block. A large mismatch creates a thermal interface resistance that disrupts the temperature profile and invalidates the lining design model.

4

Consider Joint Width & Ramming Equipment

Narrow joints (<5 mm) require a softer consistency paste. Wide joints (>10 mm) or low-speed rammers require a stiffer formulation to prevent slump. Specify the consistency classification (S / M / H) alongside the grade.

5

Review Environmental & Regulatory Requirements

Certain regions impose limits on PAH (polycyclic aromatic hydrocarbon) content in tar-pitch-bound refractories. Low-PAH or pitch-alternative binder grades are available for projects requiring compliance with EU REACH, OSHA, or equivalent regulations.

Not Sure Which Grade to Choose?

Our technical team has supported over 200 blast furnace lining projects worldwide. Share your furnace parameters and we will recommend the optimal cold ramming paste specification within 24 hours.

Talk to an Engineer

Section 10

Frequently Asked Questions

What is the difference between cold ramming paste and taphole clay?

Cold ramming paste is a carbon-based lining material used for permanent joint filling during furnace construction. Taphole clay (mud) is an alumina-silicate refractory compound used temporarily to plug and seal the taphole during and between tapping operations. They serve entirely different functions and are not interchangeable.

How long does cold ramming paste take to sinter?

Sintering is not instantaneous -- it occurs progressively during the furnace heat-up campaign. The pitch binder begins softening at ~80 °C, volatile release starts around 150-250 °C, and full carbonization of the binder to a rigid carbon matrix is achieved above 900-1000 °C. The heat-up rate through these critical temperature ranges should follow the manufacturer's recommended schedule (typically 10-30 °C/hour through volatile release zones).

Can cold ramming paste be used for furnace repairs during operation?

Cold ramming paste is primarily a construction material for new linings or major relining projects requiring furnace shutdown. For in-campaign repairs of the hearth exterior or emergency sealing of suspected leaks without shutdown, different products (injectable resins, grouting compounds, or gunning mixes) are typically used. Consult our technical team for repair-specific product recommendations.

What is the minimum order quantity (MOQ)?

MOQ varies by grade and project scale. Standard grades are typically available from 5 metric tons per order for sampling/trials, with full project quantities from 20 MT. Custom formulations may have higher MOQ due to dedicated batch production requirements. Contact our sales team for a project-specific quotation.

Does cold ramming paste comply with environmental regulations?

Standard coal tar pitch-based cold ramming paste contains PAHs, which are regulated under EU REACH, OSHA 29 CFR 1910.1002, and equivalent regulations. We offer low-PAH formulations and pitch-alternative (petroleum-based binder) grades specifically developed for projects requiring compliance with these regulations. SDS sheets, PAH content declarations, and REACH compliance documentation are available upon request.

How is cold ramming paste packaged and shipped?

Standard packaging is in 25 kg PE-lined woven bags or 1 MT big bags, palletized and stretch-wrapped. Bulk (loose) supply in lined steel drums is available for large projects. All shipments include lot-traceable certificates of compliance, test reports, and safety data sheets. Export packing for sea freight is available with moisture-barrier inner lining for extended transit.

Can you supply both cold ramming paste and carbon blocks for a complete lining system?

Yes. We are a vertically integrated manufacturer producing both carbon blocks (semi-graphitic, graphitic, microporous, ultra-microporous, and high-thermal-conductivity grades) and cold ramming paste. Sourcing both from a single supplier ensures material compatibility, eliminates interface risks, simplifies procurement, and provides unified technical support and warranty coverage for the entire lining system.

Get in Touch

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Technical Consultation

Whether you are specifying cold ramming paste for a new furnace project, a major relining, or an R&D evaluation, our technical sales team will respond within 24 business hours with grade recommendations, indicative pricing, and available certifications.

Technical Data Sheets

Full specification sheets and sintered property test reports provided with every quotation

Trial Samples Available

Small-quantity samples for laboratory evaluation available on request before full project commitment

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Technical and commercial responses guaranteed within one business day for all qualified inquiries

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Certifications & Standards

ISO 9001:2015 certified manufacturing. Products tested to GB, YB, and ISO standards.

ISO 9001

Quality Management

GB/T 3074

Carbon Testing Standard

REACH

Compliance Options

ISO 12987

Thermal Conductivity