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High purity tantalum plate
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Tantalum Plate Tantalum Plate
Tantalum Plate Tantalum Plate

High purity tantalum plate

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Tantalum plate, conforming to the ASTM B708-12 standard, offers a high melting point and excellent stability under extreme conditions. With a purity level of up to 99.99%, our cold-rolled tantalum plates exhibit low steam pressure and superior cold working performance. This product is ideal for high-temperature and chemical processing environments due to its high chemical stability and strong resistance to liquid metal corrosion. Available in RO5200 and RO5240 alloys, these tantalum plates are not only customizable to meet specific customer requirements but also suitable for bending and stamping processes. Additionally, its surface oxide film makes it a popular choice for target material in the coating industry, where electrical properties and stability are crucial.
Product Description

Tantalum plate, tantalum tungsten alloy plate (Ta-2.5W, Ta-10W)Grade:RO5200, RO5400, RO5252(Ta-2.5W), RO5255(Ta-10W)Purity:99.95%, 99.99%Standard: ASTM B 708Tantalum Plate Description:Tantalum plate, tantalum tungsten alloy plate (Ta-2.5W, Ta-10W)Grade:RO5200, RO5400, RO5252(Ta-2.5W), RO5255(Ta-10W)Purity:99.95%, 99.99%Standard: ASTM B 708Applications of tantalum and tantalum alloys.pdfTantalum and tantalum alloy rod wire specifications.pdfTantalum and tantalum alloy pipe specifications.pdfTantalum and tantalum alloy strip specifications.pdf.

Tantalum materials can be processed into a variety of parts and components for different applications:

Electronic field

Tantalum capacitors: tantalum has high dielectric constant and good stability, and processing tantalum into capacitors is its typical application in the field of electronics.Tantalum capacitors have small size, large capacity and long life, and can work stably in harsh environments such as high temperature. They are widely used in electronic devices such as mobile phones and computer motherboards to support the stable operation of circuits.

• Electrode materials for electronic devices: Tantalum can be processed into electrodes and used in semiconductor manufacturing processes, such as in the manufacture of certain high-precision transistors, where tantalum electrodes help improve the performance and stability of devices.

Chemical industry

• Chemical reaction vessels and pipes: Because of its excellent corrosion resistance, tantalum is processed into a variety of corrosion resistant reactors, crucibles, pipes, etc.For example, in the process of producing high-purity hydrochloric acid, nitric acid and other strong acids, tantalum reaction vessels and pipelines can resist acid corrosion to ensure the smooth progress of chemical production.

• Heat exchanger: Heat exchanger processed into tantalum material, used for heat exchange and transfer in chemical production.In some chemical processes involving high temperature and corrosive media, tantalum heat exchangers can effectively avoid equipment damage and reduced efficiency caused by corrosion.

Medical field

• Medical devices: tantalum has good biocompatibility and is widely used in medical devices such as orthopedic implants and surgical instruments.For example, tantalum bone plates and bone nails can be well combined with human bone, promote the growth and repair of bone tissue, and will not cause obvious immune response.

Implantable electronic medical device housing: For electronic medical devices such as pacemakers implanted in the human body, tantalum processing into housing can protect the internal circuit, while not causing harmful effects on the human body.

Aerospace field

• Aero engine components: tantalum processed into superalloy components can be used for aero engines, such as coating turbine blades.These coatings can improve the high temperature resistance of the blades and enhance the efficiency and reliability of the engine in high temperature and high pressure environments.

• Structural components of aerospace vehicles: In the field of aerospace, tantalum components processed can withstand extreme temperature changes and radiation in the space environment, providing protection for the structural stability of aerospace vehicles.


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