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Tantalum metal (Ta)- particles
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Tantalum metal (Ta)- particles Tantalum metal (Ta)- particles

Tantalum metal (Ta)- particles

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Purity: 99.95%-99.995%, Tantalum is a rare, hard, blue-gray, lustrous transition metal with excellent corrosion resistance. STP phase: Solid Appearance: grey blue Melting point: 3290 K (3017 °C, 5463 °F) Boiling point: 5731 K (5458 °C, 9856 °F) Density (near room temperature) : 16.69 g/cm3 Liquid (at mp) : 15 g/cm3 Heat of melting: 36.57 kJ/mol Heat of vaporization: 753 kJ/mol Molar heat capacity: 25.36 J/(mol·K)
Product Description

Tantalum particles are widely used in the following areas:

1. Electronics industry:

• Capacitor manufacturing: Tantalum capacitors are widely used in the field of electronics.Tantalum particles can be used to manufacture the anode of tantalum capacitors. Because of its high dielectric constant and good stability, tantalum can achieve a large capacitance in a small volume, which is suitable for electronic devices with high requirements for capacitor volume and performance, such as mobile phones, computers, communication equipment and so on.

• Electronic component electrode: It can be used as a key material for electronic components such as electron tube electrode and rectifier.Its good electrical conductivity and high temperature resistance can ensure the stable operation of electronic components under high frequency and high power working conditions.

• Integrated circuits: In integrated circuits, tantalum particles can be used to make thin film resistors, diffusion barriers, etc., helping to improve the performance and reliability of integrated circuits.

2. Aerospace field:

• Structural materials: Tantalum and its alloys have the characteristics of high melting point, high strength, good corrosion resistance and creep resistance, etc., which can be used to manufacture structural components of aircraft, missiles, spacecraft and atomic reactors, such as fuselage frame, engine parts, wing structure, etc., which can maintain good performance under extreme high temperature, high pressure and corrosive environment.

Thermal protection materials: In the thermal protection system of spacecraft, tantalum particles can be used to prepare high temperature resistant coatings or composite materials, which can effectively resist the erosion and thermal radiation of high temperature airflow, and protect the structure and equipment of spacecraft from damage.

3. Chemical industry:

• Reaction vessels and heat exchangers: Tantalum has a very high corrosion resistance, in the range of room temperature to 150 ° C, can resist almost all acids except hydrofluoric acid, smoky sulfur trioxide, and concentrated sulfuric acid and phosphoric acid at high temperatures.Therefore, it can be used to manufacture reaction vessels, heaters, coolers, various utensils and devices in chemical processing, especially in environments that need to withstand high temperatures and strong acid corrosion, tantalum is the ideal material choice.

Synthetic fiber manufacturing: The spinneret is one of the key components in the process of manufacturing synthetic fibers, which needs to be strong, wear and corrosion resistant, while ensuring that the small holes in the nozzle with a diameter of tens of microns remain strictly the same size during use.Tantalum can meet these requirements, and compared with traditional gold and platinum, tantalum has a higher cost performance and stable performance.

4. Medical field:

• Human implant materials: Tantalum has good biocompatibility and bioinertness, and will not cause adverse reactions such as allergy and inflammation in the human body.Therefore, electrodes that can be used to manufacture cardiovascular stents, neurological devices, orthopedic implants, etc., can be well combined with human tissues to provide support for the treatment and rehabilitation of patients.

• Surgical material: Tantalum can be processed into thin sheets or thin threads for repairing damaged tissue, and its good flexibility and strength can meet the needs of surgery.

5. Machinery industry:

• Cutting tools: Adding tantalum particles can improve the hardness, wear resistance and corrosion resistance of cemented carbide tools, so that they can maintain good cutting performance in the cutting process and extend the service life of the tool.For example, in the processing of high-hardness materials, high-temperature alloys and other difficult materials, tungsten carbide tools containing tantalum have significant advantages.

• Mold manufacturing: Tantalum's high strength and good toughness make it suitable for manufacturing key parts of molds, such as mold core, cavity, etc.In injection molding, die casting and other molding processes, tantalum mold can withstand high temperature, high pressure and frequent friction, to ensure the accuracy and service life of the mold.

6. Automobile Industry:

• Automotive electronic components: tantalum capacitors are widely used in automotive electronic systems, such as automotive ignition systems, starting motors, sound systems, navigation systems, etc., which can provide stable power and signal transmission for automotive electronic equipment.

• Exhaust purification: Tantalum can be used as a catalyst for cars to help reduce harmful substances in exhaust emissions, such as carbon monoxide, nitrogen oxides and hydrocarbons, which is of great significance for environmental protection.

• Glass coating: Tantalum targets can be used in the automotive glass coating industry to improve the hardness, wear resistance and UV resistance of automotive glass, improving the appearance and driving experience of automobiles.

7. Energy sector:

Nuclear energy: In the field of nuclear energy, tantalum can be used to make cladding materials for nuclear fuel, structural components of reactors, etc.Its good corrosion resistance and high temperature resistance can ensure the safe operation of nuclear reactors.

• Solar energy: In the manufacturing process of solar cells, tantalum particles can be used to prepare electrode materials, conductive pastes, etc., helping to improve the conversion efficiency and stability of solar cells.


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