Diamond Graphite Mold
Diamond graphite mold is an innovative technology developed in recent years in the area of material manufacturing. The name diamond graphite mold itself suggests the strength and durability of the material. The advantage of this mold is that it can be used to produce materials with complex...
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Product Introduction
Diamond graphite mold is an innovative technology developed in recent years in the area of material manufacturing. The name diamond graphite mold itself suggests the strength and durability of the material. The advantage of this mold is that it can be used to produce materials with complex shapes and dimensions in high volume. The diamond graphite mold has many unique properties that make it an excellent choice for various industries.

One of the most significant benefits of the diamond graphite mold is that it is made from a material that has high thermal conductivity. This property makes it ideal for use in industries that require high-temperature applications like metallurgy, aerospace, and manufacturing. The mold can withstand incredibly high-temperature ranges due to its exceptional thermal conductivity property, making it a reliable option for companies seeking to produce products with excellent thermal efficiency.

Another advantage of the diamond graphite mold is its excellent corrosion resistance. It can withstand the harsh chemical environments prevalent in metal refining and production. This property makes it ideal for use in processes that produce corrosive waste products. The diamond graphite mold helps to reduce the time and money spent on maintenance, as it does not corrode or degrade quickly. As a result, industries can carry out their critical production processes without any disruptions or delays.

The diamond graphite mold is also an incredible energy-saving solution that reduces production costs. It is known to have a low coefficient of thermal expansion, meaning it does not expand or contract significantly under temperature changes. This property saves energy and prevents material wastage during production, making it an eco-friendly option for industries.
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Technical Specification |
BTG-3 | BTG-4 | BTG-5 |
| Bulk Density g/cm3 |
≥1.75 |
≥ 1.78 | ≥ 1.85 |
| Ash Content PPM | ≤1000 | ≤1000 | ≤1000 |
| Shore Hardness | ≥ 40 | ≥ 40 | ≥ 45 |
| Specific Resistance μΩm | ≤ 12 | ≤ 12 | ≤ 10 |
| Flexural Stength Mpa | ≥ 25 | ≥ 35 | ≥ 40 |
| Compressive Strength Mpa | ≥ 45 | ≥ 55 | ≥ 75 |
| Max. Grain μm | ≤ 43 | ≤43 | ≤43 |
| Coefficient of Thermal Expansion | ≤ 4.5 | ≤ 4.5 | ≤ 4.4 |
Diamond graphite mold's strength and durability make it a long-lasting solution that provides excellent value for industries. Companies have benefitted from producing high-quality products that require replacement of molds less frequently, thereby reducing downtime for machine maintenance and tooling changeover.

The diamond graphite mold is an innovative technology that offers numerous benefits to various industries. From its thermal conductivity, corrosion resistance, energy-saving, strength, and durability properties, it is an excellent option that provides high value for companies. Industries can take advantage of this technology to develop superior products and reduce manufacturing costs.
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