Creuset de Niobium
Creuset de Niobium
Standard: ASTM B394
Material: R04200, R04210, R04251, R04261, R04295
Niobium Crucible is made of high-purity niobium metal, highly resistant to high temperatures and deformation. According to the processing method, niobium crucible can be divided into four forms including stamping, machining, sintering, and welding. As a leading supplier and manufacturer of premium niobium products, Heeger Materials leverages advanced machining centers to deliver high-precision niobium and niobium alloy crucible for wide ranges of applications.
Ou envoyez-nous un courriel à l'adresse suivante max@heegermaterials.com.Niobium Crucible Data Sheet
Référence : | HMNB1101 |
Dimensions : | Sur mesure |
Standard : | ASTM B394 |
Matériau : | R04200, R04210, R04251, R04261, R04295 |
Type : | Stamping, Machining, Sintering, and Welding |
Forme : | Cylinder, Conical, Square, or customized |
Surface: | Polished, Vannum Annealed, Cold-rolled Bringht |
La pureté : | 99.5%-99.99% |
Tempérer : | Recuit ou non recuit |
Creuset de Niobium
Niobium Creuset, also called niobium cup, is manufactured by high-purity niobium metal, which exhibits excellent corrosion resistance and high strength at high temperatures. They are widely used in rare earth smelting, high-temperature sintering, special glass melting, and corrosion-resistant vessels in the chemical industry. HM can supply high-quality niobium crucibles with a wide range of specifications. The customized solutions are available according to specific requirements.
Niobium Crucible Material Chemical Composition
Matériau | Élément principal (%) | Impuretés (≤%) | ||||||||||||
Nb | Fe | Si | Ni | W | Mo | Ti | Ta | Zr | Hf | O | C | H | N | |
RO4200 | Bal. | 0.0040 | 0.0040 | 0.0020 | 0.0050 | 0.0050 | 0.0020 | 0.0700 | 0.0200 | 0.0200 | 0.0150 | 0.0040 | 0.0015 | 0.0030 |
RO4210 | Bal. | 0.0100 | 0.0100 | 0.0050 | 0.0200 | 0.0100 | 0.0040 | 0.1000 | 0.0200 | 0.0200 | 0.0200 | 0.0100 | 0.0015 | 0.0100 |
RO4251 | Bal. | 0.0050 | 0.0050 | 0.0050 | 0.0300 | 0.0100 | 0.0200 | 0.1000 | 0.8-1.2 | 0.0200 | 0.0150 | 0.0100 | 0.0015 | 0.0100 |
RO4261 | Bal. | 0.0500 | 0.0050 | 0.0050 | 0.0500 | 0.0500 | 0.0300 | 0.5000 | 0.8-1.2 | 0.0200 | 0.0250 | 0.0100 | 0.0015 | 0.0100 |
R04220 | Bal. | 0.0050 | 0.0050 | 0.0030 | 0.0070 | — | 0.0050 | 0.1000 | 0.0100 | — | 0.0040 | 0.0030 | 0.0005 | 0.0030 |
RO4295 | Bal. | — | — | — | 0.5000 | — | 0.7-1.3 | 0.5000 | 0.700 | 9-11 | 0.0250 | 0.0150 | 0.0015 | 0.0100 |
Niobium Crucible Mechanical Properties
Mechanical Properties Of Annealed Condition
Grade | Tensile strength psi(MPa), ≥ | Yield strength δ0.2, psi (MPa),≥ | Allongement en 1″/2″ de la longueur de la jauge, %, ≥ | |
>=0.010 | <0.010 | |||
R04200, R04210 | 18000 (125) | 10500 (73) | 20 | 15 |
R04251, R04261 | 28000 (195) | 18000 (125) | 20 | 15 |
R04220 (RRR Grade) | 14000 (95) | 7200 (50) | 30 | 30 |
Niobium Crucible Processing Method
Niobium Crucible can be classified into four types according to the processing methods, including stamping, machining, sintering, and welding. The detailed processes are as follows:
- Material Selection and Purification: High-purity niobium (99.9%+) is selected, and impurities are removed using methods like vacuum arc remelting (VAR).
- Fusion et coulée: Niobium is melted in a vacuum arc furnace and then cast into ingots or billets for further processing.
- Hot Working: The niobium is forged or extruded into semi-finished shapes like discs or rods to improve grain structure and shape.
- Shaping and Forming: Niobium is stamped, pressed, or deep-drawn into crucible shapes, followed by machining for precise dimensions.
- Traitement thermique: Annealing or vacuum heat treatment is performed to relieve stresses and enhance strength and corrosion resistance.
- Surface Finishing: Grinding, polishing, and coating (if needed) are done to achieve a smooth surface and improve durability.
Niobium Crucible Applications
- Rare Earth Smelting: Niobium crucibles are able to withstand high temperatures and corrosive environments, making them ideal for use in the smelting process of rare earth metals.
- High-temperature Sintering: Niobium crucibles are used for sintering ceramics, metal powders, and other materials in high-temperature sintering processes.
- Industrie chimique: Niobium crucibles are used as chemical-resistant containers for handling strong acids, alkalis, and other corrosive chemicals.
- Sputtering and Evaporation: Niobium crucibles are used for sputtering and evaporating materials in the physical vapor deposition (PVD) process to prepare thin films.
Niobium Crucible Packaging
The Niobium Crucible is carefully placed in wooden cases or cartons with additional support from soft materials to prevent any shifting during transportation. This packaging method guarantees the integrity of the products throughout the delivery process.
Propriétés du Niobium
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