Customization: | Available |
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Model No.: | 3X3mm |
Application: | Corrosion-Resistant Materials |
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Features
Our company selects high-purity sponge titanium as the raw material for our titanium granules, ensuring the purity and quality of the finished product. After undergoing mechanical crushing and powder sieving to remove impurities and non-conforming granules, the sponge titanium is melted using plasma smelting technology, forming a liquid metal solution. High-pressure gas or water atomization is then employed to create fine droplets from the liquid metal, which solidify into granules during the cooling process. The atomized granules undergo heat treatment to enhance their mechanical properties and corrosion resistance. Refining through chemical and physical methods is conducted to eliminate any residual impurities. Stringent quality control inspections are performed on the finished product, grading the titanium granules based on size, purity, and morphology. The qualified titanium granules are then carefully packaged to ensure safety and quality during storage and transportation.
High-quality and cost-effective 3mm3mm Titanium (Ti) cylindrical particles from China. CAS 7440-32-6
Name | 3mm3mm Titanium (Ti) cylindrical | |||||||
Purity | 99.9%-99.99% | |||||||
Size | 99.9% 3x3mm 99.99%3x3mm | |||||||
Boiling Point |
3287 |
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Density | 4.506 g/cm³ | |||||||
Melting Point |
1668 |
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Shape | corrosion-resistant materials | |||||||
MOQ | 1KG | |||||||
Application | Catalysis field Biomedical field Energy field |
Product features
Titanium particle product features: The perfect combination of high strength and low density endows titanium particles with excellent mechanical properties, making them ideal materials in industries such as aerospace, medical, and chemical; excellent corrosion resistance maintains stable performance even in extreme environments, extending service life; good biocompatibility, suitable for biomedical fields such as implants and drug delivery systems; stable high-temperature performance, maintaining strength and toughness in high-temperature environments, suitable for high-temperature operating conditions; good processability, easily processed into required shapes and sizes through various processes.
Application
2.Medical Industry: Due to titanium's biocompatibility, it is used for manufacturing medical implants such as artificial joints, bone plates, and bone screws. Titanium particles can be used in 3D printing to customize medical implants that meet individual patient needs.
3.Chemical Industry: Titanium, with its good corrosion resistance, can be used to manufacture components for chemical equipment such as reactors and heat exchangers. Titanium particles can serve as a coating material to enhance the corrosion resistance of equipment.
Storage conditions