Overview of Nb1 niobium bar titanium-niobium superconductor rod
Niobium, often found in conjunction with tantalum minerals, is primarily extracted as a byproduct of tin and tantalum mining. Its chief ores include pyrochlore and columbite. Once refined, niobium becomes highly versatile, finding application in alloys, superconductors, and various high-tech materials.
Feature of Nb1 niobium bar titanium-niobium superconductor rod
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Superior Strength and Lightness: When added to steel in small quantities (typically less than 1%), niobium significantly enhances the strength and toughness of the alloy while reducing its weight, making it ideal for aerospace and automotive applications.
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Corrosion Resistance: Like tantalum, niobium forms a passive oxide layer that protects it from corrosion, making niobium-based alloys suitable for use in harsh environments.
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Superconductivity: Niobium exhibits excellent superconducting properties when cooled below its critical temperature of about 9.2 K (-264°C or -443°F). This property makes it the primary material for superconducting magnets used in MRI scanners and particle accelerators.
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Magnetic Properties: Niobium is paramagnetic at room temperature but becomes strongly diamagnetic when cooled, meaning it repels magnetic fields. This characteristic is exploited in certain specialized applications.
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Ease of Fabrication: Despite its strength, niobium is easily formed, welded, and machined, facilitating its use in complex engineering designs.
(Nb1 niobium bar titanium-niobium superconductor rod)
Parameters of Nb1 niobium bar titanium-niobium superconductor rod
The parameter used to describe the electrical properties of Nb1 Niobium Bar Titanium-Niobium Superconductor Rod is “critical temperature” or “critical magnetic field strength”. It is typically measured in Tesla (T) and is given by the formula:
Critical Temperature = 54 K
where “k” is the Boltzmann constant and “n_0” is the saturation magnetization of niobium.
It’s important to note that the critical temperature of a superconductor changes with the type of metal it is made of and its composition. For example, some types of niobium have higher critical temperatures than others. Additionally, other factors such as impurities, defects, and magnetic fields can also affect the critical temperature.
(Nb1 niobium bar titanium-niobium superconductor rod)
Company Profile
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(Nb1 niobium bar titanium-niobium superconductor rod)