Graphite Heater High Temperature Carbon Carbon Composites In Aerospace

Graphite Heater High Temperature Carbon Carbon Composites In Aerospace
Basic Properties
Place of Origin: China
Brand Name: Fangda
Certification: Iso9001
Trading Properties
Minimum Order Quantity: 1 piece
Product Summary
Grahite Heater High Temperature Carbon Carbon Composites for Aerospace and Thermal Protection Systems Grade Bulk Density (g/cm³) Electric Resistivity (μΩ·m) Compressive Strength (MPa) Flexural Strength (MPa) Shore Hardness Ash Content / Purification (ppm) Graphitization Purification (ppm) Product ...
Product Custom Attributes
Highlight

Graphite Heater High Temperature

,

High Temperature Carbon Carbon Composites

,

Carbon Carbon Composites In Aerospace

Material:
Isostatic Graphite
Color:
Black
Shape:
Solid Block
Product Description
Detailed Specifications & Features

Grahite Heater High Temperature Carbon Carbon Composites for Aerospace and Thermal Protection Systems

 

Grade Bulk Density (g/cm³) Electric Resistivity (μΩ·m) Compressive Strength (MPa) Flexural Strength (MPa) Shore Hardness Ash Content / Purification (ppm) Graphitization Purification (ppm) Product Purification (ppm) Coefficient of Thermal Expansion (×10⁻⁶/°C) Thermal Conductivity (W/m·K) Young’s Modulus (GPa) Applications
CDI-1A 1.85 10–13 90 45 60 200 50 5 5.5 133 11.5 Semiconductor, Heat zone in PV Industry, Ceramic Sintering, Vacuum furnace
CDI-1B 1.80 10–13 86 40 55 200 50 5 5.4 121 10.0 Semiconductor, Heat zone in PV Industry, Ceramic Sintering, Vacuum furnace
CDI-1C 1.82 11–15 100 48 58 200 50 5 5.6 120 10.6 Semiconductor, Heat zone in PV Industry, Ceramic Sintering, Vacuum furnace
CDI-1D 1.75 12–16 80 40 58 200 50 5 5.8 108 10.0 Semiconductor, Heat zone in PV Industry, Ceramic Sintering, Vacuum furnace

 

The graphite heater is a high-performance thermal element engineered for extreme-temperature industrial processes. Manufactured from high-purity, fine-grained graphite, it delivers excellent electrical conductivity, uniform resistive heating, and precise temperature control. Its low thermal expansion ensures dimensional stability under rapid thermal cycling, while superior thermal conductivity promotes even heat distribution across the heating zone. The material’s chemical inertness minimizes contamination, making it ideal for sensitive environments such as semiconductor processing, crystal growth, and optical fiber production. Designed for durability, the graphite heater supports long service life and can be customized in geometry and resistance characteristics for specific furnace configurations.

Related Products