Ridgehart Premium Expandable Graphite – High Expansion Ratio (350) | Electrode-Grade & Fire-Retardant Applications
Ridgehart Expandable Graphite is a high-performance, inorganic carbon material engineered for applications requiring rapid thermal expansion, high temperature resistance, chemical durability, and superior mechanical flexibility. With a carbon content of 92–95%, an expansion multiple of ≥350, and controlled particle distribution, this material is ideal for electrode materials, fire-retardant systems, oil-absorption products, conductive coatings, and environmental applications.
Composition & Purity:
- Carbon content: 92–95%
- Ash content: 5–7%
- Volatile matter: 20.4%
- Moisture content: 0.3–0.4%
Performance Characteristics:
- Expansion multiple: ≥350 (high-expansion grade)
- pH value: 4.2–4.6 (stable, slightly acidic)
Particle Distribution:
- +50 mesh: 74.5%
- –50 mesh: 25.5%
Material Form:
- Layered crystalline expandable graphite
- SEM-confirmed flake structure (per technical report)
- High elasticity, mechanical strength, and chemical durability
Material Characteristics:
- High Expansion Performance: Engineered for rapid and uniform expansion under heat, producing a worm-like expanded graphite structure ideal for fire-retardant and sealing applications.
- Excellent Chemical Resistance: Resistant to acids, alkalis, oils, and typical industrial reactants — enabling long-term stability in aggressive chemical environments.
- Superior Thermal Stability: Maintains structural integrity and performance under high-temperature exposure, suitable for refractory and thermal-insulation systems.
- Strong Mechanical Properties: Provides tensile strength, compressive resistance, bending elasticity, and radiation resistance — enabling its use in industrial, environmental, and engineering applications.
- Electrically Conductive: Expandable graphite’s layered carbon structure offers stable conductivity, suitable for conductive coatings, antistatic agents, and electrode materials.
Key Advantages:
- High expansion volume for superior flame-retardant efficiency
- Strong acid/alkali resistance and thermal endurance
- Excellent electrical conductivity and structural resilience
- Suitable for energy storage, coatings, plastics, and environmental systems
- Controlled mesh distribution for consistent processing behaviour
Storage Conditions:
Store sealed, in a cool, dry, dark environment protected from light. Shelf life: 12 months (unopened) under proper storage conditions. Avoid exposure to moisture and direct sunlight.
Application Uses:
- Electrode Materials: Used in advanced electrode formulations for batteries, capacitors, and electrochemical devices due to conductivity and stability.
- Fire-Retardant Additives: Excellent for flame-retardant plastics, rubbers, foams, and coatings; expands under heat to form a protective carbon layer.
- Oil-Absorption & Spill Control: Effective in oil-absorption materials thanks to its porous expanded structure.
- Chemical & Petrochemical Industry: Applicable in catalytic systems, corrosion-resistant materials, and process additives.
- Environmental Protection: Useful in pollution control, filtration, and sorbent materials.
- Medical & Industrial Textiles: Used in medical dressings and specialised industrial fabrics for antimicrobial, absorbent, and protective performance.
- Military Applications: Suitable for smoke agents and heat-activated dispersants.
Pairs well with
Product information
Country: United Kingdom
Purity: 99.9%
Research Focus: Advanced Nanomaterials & Applications
Research Grade: Advanced-Grade Scientific Precision
Performance Metric: High Efficiency & Stability
Year of Manufacture: 2025
Scale: Signature Prototype Model