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Graphite Components
Graphite Components

Graphite Components

MOQ : 1 Piece

Graphite Components Specification

  • Usage
  • Industrial
  • Material
  • Graphite
  • Application
  • Used in furnace parts, Heat Exchangers, Crucibles, Casting Dies, Seals, Bearings, Gaskets, and Mechanical Components
  • Chemical Composition
  • High Carbon Graphite ( 99%)
  • Shape
  • Block, Ring, Plate, Rod, Customized Shapes
  • Product Type
  • Graphite Components
  • Color
  • Grey
  • Hardness
  • Shore Hardness 35-55
  • Density
  • 1.9 Gram per cubic centimeter(g/cm3)
  • Oxidation Resistance
  • Improved by impregnation or coatings
  • Customization
  • Available as per drawing or specification
  • Compressive Strength
  • 60 MPa
  • Electrical Resistivity
  • 10-15 m
  • Grain Size
  • Ultra-fine, Fine, Medium, Coarse
  • Porosity
  • Low ( 13%)
  • Thermal Conductivity
  • 125-170 W/mK
  • Operating Temperature
  • Up to 3000C in inert atmosphere
 

Graphite Components Trade Information

  • Minimum Order Quantity
  • 1 Piece
  • Supply Ability
  • 1000 Pieces Per Week
  • Delivery Time
  • 15 Days
 

About Graphite Components

We are an unparalleled name, engaged in offering premium quality range of Graphite Components that such as casting die, resistance heating elements, rods and tubes. The provided components are widely demanded in industrial, electronics and energy related sectors owing to their variegated uses. In order to manufacture the offered components, our dexterous professionals use superlative quality graphite granules and sophisticated methodology. As per the varied demands of clients, we are offering these Graphite Components in numerous specifications within budgeted costs.

Features:

  • Excellent surface finish

  • Rugged design

  • Non-corrosive

  • Dimensional accuracy



Advanced Performance in Extreme Conditions

With a high operating temperature capacity up to 3000C in inert atmospheres, these graphite components provide optimal reliability for furnaces, heat exchangers, and other industrial applications. Enhanced via impregnation or special coatings, their oxidation resistance makes them ideal for harsh operational requirements.


Tailored Solutions and Wide Application Range

Components are available in various shapes-blocks, rings, rods, plates, and as per custom drawings-to fit unique design specifications. Their versatility and customizability enable use across sectors such as metal casting, chemical processing, and mechanical engineering.

FAQ's of Graphite Components:


Q: How are graphite components with low porosity and high thermal conductivity used in industrial applications?

A: Graphite components with low porosity (13%) and high thermal conductivity (125-170 W/mK) are used in applications requiring efficient heat transfer and resistance to thermal stress, such as furnace parts, heat exchangers, crucibles, casting dies, seals, bearings, and mechanical gaskets.

Q: What customization options are available for these graphite components?

A: These components can be tailored to customer specifications, including shape, size, grain size (ultra-fine to coarse), and additional impregnation or coating for improved oxidation resistance. Custom designs can be produced from technical drawings or detailed requirements.

Q: When should improved oxidation-resistant graphite be chosen for a project?

A: Improved oxidation-resistant graphite should be selected when operating in environments where the material is exposed to air or reactive gases at elevated temperatures, as this enhances lifespan and maintains mechanical and thermal properties over time.

Q: Where are these graphite components commonly applied?

A: These components are widely utilized in the metal, chemical, and mechanical industries, notably in the construction of furnace parts, heat exchangers, crucibles, casting dies, seals, bearings, and gaskets due to their robustness and thermal efficiency.

Q: What is the benefit of using high carbon graphite with high density in mechanical components?

A: High carbon graphite (99%) with a density of 1.9 g/cm3 offers excellent strength, thermal stability, and durability, making it ideal for mechanical applications that demand precise performance and long service life.

Q: How is the manufacturing process adapted for various grain sizes and customer requirements?

A: The manufacturing process involves selecting the appropriate grain size-ultra-fine, fine, medium, or coarse-and employing advanced forming and machining techniques to produce blocks, rings, rods, plates, or customized components per customer specifications.

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