| Bulkdensity: | 0.6 G/cm³ | Purity: | 99.9% |
|---|---|---|---|
| Carboncontent: | 95% | Model No: | Standard |
| Colour: | Black Powder | Sample: | Provide |
| Highlight: | high carbon content graphite minerals,natural graphite industrial material,graphite raw material for manufacturing |
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The Graphite Raw Material, identified by Model No: Standard, is a premium-grade product designed to meet the demanding requirements of various industrial applications. This product is derived from Natural Graphitic Minerals, ensuring an authentic and high-quality source of graphite that offers superior performance. With a carbon content of 95%, the material stands out as an exceptional Carbon-Based Feed Material, making it an ideal choice for manufacturers and industries that rely heavily on graphite’s unique properties.
One of the key features of this Graphite Raw Material is its high purity level, rated at 99.9%. This remarkable purity ensures that the graphite feedstock material is free from significant impurities, which can adversely affect the quality and efficiency of end products. Such a high degree of purity is essential for applications requiring consistent electrical conductivity, thermal resistance, and chemical stability. This makes the material suitable for use in advanced technologies such as batteries, lubricants, refractories, and other carbon composite manufacturing processes.
The physical characteristics of this graphite feedstock material are equally impressive. Presented as a black powder, the product exhibits a uniform color and texture, indicative of its high-quality processing and refinement. Its bulk density is measured at 0.6 grams per cubic centimeter (G/cm³), providing an optimal balance between material volume and weight. This density enables easy handling, transportation, and incorporation into various manufacturing setups without compromising the integrity or performance of the final product.
As a Carbon-Based Feed Material, this graphite raw material plays a vital role in numerous industrial sectors. Its excellent electrical conductivity makes it highly sought-after for use in electrodes and conductive components. Additionally, the material’s excellent thermal conductivity and resistance to high temperatures make it indispensable in refractory applications, where materials must withstand extreme heat without degrading. The black powder form allows for easy blending with other substances, facilitating the production of composite materials that benefit from graphite’s inherent lubricating and strength-enhancing properties.
Furthermore, the Graphite Raw Material sourced from Natural Graphitic Minerals offers sustainable and reliable feedstock for industries aiming to optimize their production processes. The natural origin of the graphite ensures that it retains the crystalline structure and purity that synthetic alternatives often struggle to replicate. This results in improved mechanical performance and longevity of the products manufactured using this graphite feedstock material.
In summary, the Graphite Raw Material Model No: Standard is a top-tier product distinguished by its 95% carbon content, 99.9% purity, and a bulk density of 0.6 G/cm³. Its black powder form and consistent quality make it an excellent choice for a wide array of applications requiring dependable Carbon-Based Feed Materials. Leveraging the benefits of Natural Graphitic Minerals, this graphite feedstock material ensures superior performance, reliability, and efficiency for your industrial needs.
| Model No | Standard |
| Carbon Content | 95% |
| Colour | Black Powder |
| Purity | 99.9% |
| Bulk Density | 0.6 G/cm³ |
| Sample | Provide |
The Graphite Raw Material, with a bulk density of 0.6 g/cm³ and a carbon content of 95%, serves as an essential carbonaceous raw mineral in various industrial applications. This standard model graphite feedstock material is highly valued for its exceptional purity level of 99.9%, making it an ideal high-purity carbon feed for advanced manufacturing processes. Its consistent quality and availability in sample form allow for easy evaluation and integration into diverse production lines.
One of the primary application occasions for this graphite raw material is in the production of refractory materials. Due to its excellent thermal stability and high carbon content, it is widely used to manufacture crucibles, molds, and linings for furnaces that operate under extreme temperatures. The graphite feedstock material’s high purity ensures minimal contamination, which is critical for maintaining the integrity and performance of refractory products.
Additionally, the graphite raw material is essential in the battery industry, particularly for lithium-ion battery anodes. As a high-purity carbon feed, it contributes to the efficiency and longevity of batteries by providing a stable and conductive structure for lithium ions during charge and discharge cycles. Its consistent bulk density of 0.6 g/cm³ enables uniform particle size distribution, enhancing the electrochemical properties of battery components.
In the field of metallurgy, this carbonaceous raw mineral is used as a carbon additive in steelmaking and foundry processes. The high carbon content and purity help improve the mechanical properties of metals, such as hardness, strength, and corrosion resistance. It is also employed in the production of carbon brushes for electric motors, where its conductivity and durability are crucial for optimal performance.
Furthermore, the graphite raw material finds application in the manufacturing of lubricants, seals, and gaskets, where its excellent lubricating properties reduce friction and wear in mechanical systems. The availability of samples allows industries to test and customize the material for specific requirements, ensuring compatibility and efficiency in various scenarios.
Overall, this graphite raw material's unique combination of high purity, substantial carbon content, and suitable bulk density makes it an indispensable high-purity carbon feed across multiple sectors, ranging from energy storage to metallurgy and refractory manufacturing. Its versatility as a carbonaceous raw mineral ensures it meets the demanding standards of modern industrial applications.
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