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Graphite for Industrial Sinterings
Graphite for Industrial Sinterings

Graphite for Industrial Sinterings

MOQ : 1 Metric Ton

Graphite for Industrial Sinterings Specification

  • Usage
  • Industrial
  • Material
  • Graphite
  • Application
  • Industrial Sinterings
  • Chemical Composition
  • High Purity Carbon (Graphite)
  • Shape
  • Block / Plate / Customized
  • Product Type
  • Graphite for Industrial Sinterings
  • Color
  • Grey
  • Hardness
  • Shore Hardness 48-55
  • Density
  • 1.68-1.91 Gram per cubic centimeter(g/cm3)
  • Porosity
  • 13-18%
  • Flexural Strength
  • 35-48 MPa
  • Resistivity
  • 10-13 m
  • Bulk Density
  • 1.68 g/cm3
  • Color
  • Grey to Black
  • Ash Content
  • 0.1%
  • Particle Size
  • Fine Grain (as required)
  • Thermal Conductivity
  • 120-150 W/mK
  • Operating Temperature
  • Up to 3500C (in inert atmosphere)
  • Compressive Strength
  • 60-85 MPa
 

Graphite for Industrial Sinterings Trade Information

  • Minimum Order Quantity
  • 1 Metric Ton
  • Supply Ability
  • 1000 Metric Tons Per Week
  • Delivery Time
  • 15 Days
 

About Graphite for Industrial Sinterings

Graphite for industrial sintering and powder metallurgy:

  • Graphite components applied in sintering processes in the form of boards and crucibles are usually used for manufacturing of industrial tools
  • These processes require utilization of graphite mainly for its specific characteristics, such as thermal and oxidation resistance, high firmness and mechanical compactness
  • We are capable of manufacturing various types and shapes of sintering moulds according to your specific needs

For sintering processes we manufacture:

  • Graphite crucibles and dies
  • Sintering boards
  • Supports
  • Rolling tracks

Product details

Bulk Density

1.68-1.91g/cm3

Usage/Application

Industrial Sintering

Packaging Type

Box

Material

Graphite

Compressive Strength

86-135 Mpa



Exceptional Thermal and Mechanical Performance

Engineered with advanced properties, our graphite showcases remarkable thermal conductivity and mechanical strength, crucial for consistent performance during industrial sintering processes. High-temperature stability up to 3500C (in inert atmospheres) guarantees durability, while a low ash content and fine grain structure enhance product quality and process efficiency.


Customized for Industrial Sintering Efficiency

Offered in blocks, plates, or custom shapes, these graphite components meet diverse application needs for industrial sintering. Our materials support precise, energy-efficient operations, thanks to their high purity, tailored density, and customizable sizes, allowing for optimal integration into complex industrial workflows.

FAQ's of Graphite for Industrial Sinterings:


Q: How does graphite with these specifications benefit industrial sintering processes?

A: Graphite with a bulk density of 1.68 g/cm3, high thermal conductivity, and low ash content promotes even heat distribution, reduces contamination, and maintains structural stability at temperatures up to 3500C, resulting in superior sintered products and efficient process cycles.

Q: What industries commonly use this type of graphite for sintering applications?

A: This graphite is extensively used in metallurgy, ceramics, and advanced materials manufacturing industries, particularly where high-temperature sintering and consistent material purity are required for producing critical industrial components.

Q: When should I choose fine grain graphite with high purity for my application?

A: Fine grain, high-purity graphite is ideal when your sintering process demands excellent surface finish, reduced porosity, and minimal impurity levels to enhance the performance and longevity of the sintered parts.

Q: Where is this industrial graphite typically applied within the sintering workflow?

A: These graphite blocks and plates serve as support structures, heater elements, and tooling components within sintering furnaces, ensuring stable operations in both batch and continuous industrial setups.

Q: What is the manufacturing process for producing fine grain graphite used in sintering?

A: Production involves blending high-quality carbon sources, fine grinding, pressing into the desired block or plate shape, and then high-temperature graphitization, resulting in a high-strength, low-ash product tailored for industrial sintering applications.

Q: How should graphite blocks or plates be handled for optimal performance during sintering?

A: Handle parts with care to avoid mechanical impact, store in a clean and dry environment, and ensure they are free from moisture before sintering, as proper handling maintains integrity and prolongs service life.

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