| Parent Group | High Purity Metals |
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99.9% Nickel Metal Ingot
| CAS # | 7440-02-0 |
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| Product # | 1409-0013-09-30 |
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| Parent Group | High Purity Metals |
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| Molecular Weight | 58.69 |
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| MDL # | MFCD00011137 |
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| EINECS # | 2311114 |
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| Formula | Ni |
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| Sizes | 1-pc |
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| PubChem URL: | https://pubchem.ncbi.nlm.nih.gov/compound/nickel |
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Chemical Properties
| Form | Ingot |
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| Purity | 99.90% |
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| Morphology | Variable |
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| Boiling Point | 2732 °C |
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| Melting Point | 1455 °C |
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Applications
| These high-purity nickel ingots have a range of applications. They are crucial for producing nickel alloys with specific properties, used in aerospace, electronics, and automotive industries. Nickel ingots are also used in catalysts, electrical components, and architectural applications due to nickel's conductivity and corrosion resistance. |
Notes
| Careful handling is necessary to avoid surface damage that could affect their usability. Nickel allergies should be considered when dealing with ingots that might have skin contact. Adhere to safety guidelines and industry standards during storage, transportation, and application to ensure optimal performance and quality in various applications. |
| Bulk Density | 8.902 g/cm3 |
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| True Density | N/A |
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| Particle Size | Available in multiple sizes |
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| Storage & Sensitivity | Store 99.9% nickel metal ingots in a dry, controlled environment to prevent oxidation and maintain purity. Protect surfaces from physical damage and consider using protective coatings. |
|---|
Chemical Properties
| Form | Ingot |
|---|
| Purity | 99.90% |
|---|
| Morphology | Variable |
|---|
| Boiling Point | 2732 °C |
|---|
| Melting Point | 1455 °C |
|---|
Applications
| These high-purity nickel ingots have a range of applications. They are crucial for producing nickel alloys with specific properties, used in aerospace, electronics, and automotive industries. Nickel ingots are also used in catalysts, electrical components, and architectural applications due to nickel's conductivity and corrosion resistance. |
Notes
| Careful handling is necessary to avoid surface damage that could affect their usability. Nickel allergies should be considered when dealing with ingots that might have skin contact. Adhere to safety guidelines and industry standards during storage, transportation, and application to ensure optimal performance and quality in various applications. |
| Bulk Density | 8.902 g/cm3 |
|---|
| True Density | N/A |
|---|
| Particle Size | Available in multiple sizes |
|---|
| Storage & Sensitivity | Store 99.9% nickel metal ingots in a dry, controlled environment to prevent oxidation and maintain purity. Protect surfaces from physical damage and consider using protective coatings. |
|---|
Chemical Properties
| Form | Ingot |
|---|
| Purity | 99.90% |
|---|
| Morphology | Variable |
|---|
| Boiling Point | 2732 °C |
|---|
| Melting Point | 1455 °C |
|---|
| Bulk Density | 8.902 g/cm3 |
|---|
| True Density | N/A |
|---|
| Particle Size | Available in multiple sizes |
|---|
| Storage & Sensitivity | Store 99.9% nickel metal ingots in a dry, controlled environment to prevent oxidation and maintain purity. Protect surfaces from physical damage and consider using protective coatings. |
|---|
Applications
| These high-purity nickel ingots have a range of applications. They are crucial for producing nickel alloys with specific properties, used in aerospace, electronics, and automotive industries. Nickel ingots are also used in catalysts, electrical components, and architectural applications due to nickel's conductivity and corrosion resistance. |
Notes
| Careful handling is necessary to avoid surface damage that could affect their usability. Nickel allergies should be considered when dealing with ingots that might have skin contact. Adhere to safety guidelines and industry standards during storage, transportation, and application to ensure optimal performance and quality in various applications. |