Iridium Metal Rod
Iridium Metal Rod Description
Material selection and processing
Our technical team generally uses powder metallurgy for processing, and the process includes: preparation of high-purity iridium powder - cold pressing - sintering densification - rolling, forging and drawing - laser cutting - surface polishing - quality inspection and control.
Characteristics
Good high-temperature performance
It has a high melting point and strong creep resistance. It can maintain stable physical and chemical properties in extremely high temperature environments (such as high temperature furnaces, aerospace engine components, and metallurgical industries) and is not easy to melt or deform.
Strong chemical stability
Iridium has a strong resistance to acids (such as aqua regia, concentrated sulfuric acid, concentrated nitric acid), alkalis, and various corrosive gases (such as chlorine and bromine). It also has excellent catalytic properties and can accelerate chemical reactions.
Long service life
It has a high hardness (Mohs hardness of about 6.5) and excellent wear resistance, even in high-friction or impact environments.
Other excellent properties
Good electrical conductivity stability at high temperatures, low thermal expansion coefficient and good dimensional stability.
Application
The application of Iridium Metal Rod mainly relies on its extreme environmental adaptability (high temperature, corrosion, radiation) and functional characteristics (catalysis, anti-magnetism, wear resistance), and it is still an indispensable strategic material in key fields such as aerospace engines, high-end catalysts, and medical implants.
- Used in structural components such as nozzles, combustion chambers, and turbine blades of spacecraft engines, it can withstand extreme high temperatures during high-speed flight and ensure the safety of aircraft operation.
- Used in chemical equipment such as reactors, distillation towers, and pipeline valves in strong acid/alkaline environments to ensure the smooth and safe progress of chemical production.
- As an iridium-based catalyst, it improves efficiency and extends the service life of catalysts in hydrogenation, dehydrogenation, and isomerization reactions.
- Used as a high-temperature electrode material in chip manufacturing equipment (such as lithography machines and ion implanters), it is conducive to high-precision processing of semiconductor wafers.
- Used in antimagnetic brackets for superconducting quantum interference devices (SQUID) and nuclear magnetic resonance (MRI) equipment. The antimagnetism of iridium prevents it from interfering with precision magnetic field measurements and can ensure instrument accuracy.
- Used in implantable medical devices such as pacemaker electrodes, neural stimulator wires, and artificial joint coatings. Iridium is non-toxic and non-sensitizing to human tissue and can be implanted in the body for a long time to ensure device reliability.
Iridium Metal Rod Dimension
|
Material |
Ir |
| Purity | ≥ 99.0%-99.99% |
|
Diameter |
0.1m-50mm |
|
Length |
100-2000mm |
| Tolerance | ±0.01 mm-±0.5 mm |
|
Density |
22.56g/cm3 |
| Hardness | 160--500 HV |
|
Shape |
Round |
|
Delivery Time |
15-20 days |
|
Surface |
Black, Alkaline Cleaning, Polishing |
|
Standard |
ASTM, GB |
|
Certification |
ISO 9001 |
Iridium Metal Rod Pictures


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