Telluride copper Powder
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Product Name: Telluride Copper Powder
| Product |
Telluride Copper Powder |
| CAS No. | 12023-23-7 |
| Appearance | Black Powder |
| Purity | 99.9% |
| APS | 1 – 5 Microns (Can be customized) |
| Ingredient | CuTe |
| Product Code | NCZ-NSC-139/20 |
Telluride Copper Powder Description:
Black crystal powder, room temperature is stable in the air. Copper telluride is not only an important inorganic material, or store a great form of tellurium and copper resources
RELATED INFORMATION
Storage Conditions:
Airtight sealed, avoid light and keep dry at room temperature.
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Note: We supply different size ranges of nano and micron size powder as per the client’s requirements and also accept customization in various parameters.
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Customization:
If you are planning to order large quantities for your industrial and academic needs, please note that customization of parameters (such as size, length, purity, functionalities, etc.) are available upon request.
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Aluminum Powder
 Aluminum Powder
Product Name: Al Powder
| Product | Al Powder |
| CAS No. | 7429-90-5 |
| Appearance | Grey |
| Purity | 99.9% |
| APS | 1 – 5 Micron (Can be customized) |
| Ingredient | Al+3 |
| Product Code | NCZ-NSC-163/20 |
Description of Al (Aluminum Powder)
| 3D printing metal Powder
Powder metallurgy, injection molding, spray painting, etc. |
Al Powder Related Information
Storage Conditions:
Airtight sealed, avoid light, and keep dry at room temperature.
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Chromium Carbide Cr3C2 Powder
Product Name: Chromium Carbide Cr3C2 Powder
| Product | Chromium Carbide |
| Colour | Gray Powder |
| Purity | ≥ 99.9% |
| Particle size | 1-10 µM (customizable) |
| Ingredient/MF | Cr3C2 |
| Product Code | NCZ-C-101/20 |
| CAS Number | 12012-35-0 |
Chromium Carbide Cr3C2 Powder APPLICATION FIELDS
Chromium Carbide Cr3C2 Powder is a ceramic compound that exists in several different chemical compositions: Cr3C2, Cr7C3, and Cr23C6. At standard conditions, it exists as a gray solid.
It is extremely hard and corrosion-resistant.
It is also a refractory compound, which means that it retains its strength at high temperatures as well.
These properties make use as an additive to metal alloys. When chromium carbide crystals are integrated into the surface of a metal it improves the wear resistance and corrosion resistance of the metal and maintains these properties at elevated temperatures.
Cr3C2 powder is mixed with solid nickel-chromium. This mixture is then heated to very high temperatures and sprayed onto the object being coated where it forms a protective layer. This layer is essentially its own metal matrix composite, consisting of hard ceramic Cr3C2 particles embedded in a nickel-chromium matrix.
Cr3C2 prevents large grains from forming in the composite, which results in a fine-grained structure of superior toughness.
Chromium Carbide Cr3C2 Application:
- Used as high temperature resistant and wear-resistant surface materials
- Used for welding and flux-cored wire
- Chromium carbide is useful in the surface treatment of metal components.
- Chromium carbide is used to coat the surface of another metal in a technique known as thermal spraying.
- Chromium carbide is used as an additive in cutting tools in order to improve toughness by preventing the growth of large grains.
Chromium Carbide Cr3C2 Properties:
There are three different crystal structures for chromium carbide corresponding to the three different chemical compositions. Cr23C6 has a cubic crystal structure and a Vickers hardness of 976 kg/mm2. Cr7C3 has a hexagonal crystal structure and a microhardness of 1336 kg/mm2.
Cr3C2 is the most durable of the three compositions and has an orthorhombic crystal structure with a microhardness of 2280 kg/mm2. For this reason, Cr3C2 is the primary form of chromium carbide used in surface treatment.
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Please contact us for customization and price inquiry
Note: We supply different size ranges of Nano and micron as per the client’s requirements and also accept customization in various parameters.
Ferro Titanium Carbide Powder
Product Name: Ferro Titanium Carbide Powder
| Product | Ferro Titanium Carbide Powder |
| Colour | Â Gray Powder |
| Purity | ≥ 99.9% |
| Particle size | 1-10 µM (customizable) |
| Ingredient/MF | FeTiC |
| Product Code | NCZ-C-102/20 |
| CAS Number | 12604-56-7 |
Ferro Titanium Carbide Powder Applications Fields:
Ferro Titanium Carbide Powder is a ferroalloy, an alloy of iron and titanium with between 10–20% iron and 45–75% titanium and sometimes a small amount of carbon. Ferrotitanium can be manufactured by mixing titanium sponge and scrap with iron and melting them together in an induction furnace.
During steelmaking, titanium is usually introduced as ferrotitanium because of its relatively low melting temperature and high density.
Ferrotitanium is usually produced by induction melting of titanium scrap with iron or steel; however, it also is produced directly from titanium mineral concentrates.
Application of Ferro Titanium carbide powder:
In the present study, Fe-based hardfacing coating reinforced by TiC particles was obtained by manual shielded metal arc welding (SMAW) in which H08A bare electrode was coated with fluxes, to which different measures of ferrotitanium, rutile, graphite, calcium carbonate, and calcium fluoride had been added.
The microstructure and wear properties of the hardfacing coating were studied through scanning electron microscopy (SEM), transmission electron microscopy (TEM), an X-ray diffractometer (XRD), and a wear test.
The results indicate that TiC particles are produced by a direct metallurgical reaction between ferrotitanium and graphite during welding.
TiC particles are uniformly dispersed in the matrix of lath martensite and retained austenite with particle sizes in the range of 3–5 μm. Fe-based hardfacing coating reinforced by TiC particles is found to possess better wear resistance and a lower coefficient of friction than that of the AISI 1045 steel substrate.
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Please contact us for customization and price inquiry
Note: We supply different size ranges of Nano and micron as per the client’s requirements and also accept customization in various parameters.
Iron Boride Powder
Product Name: Iron Boride Powder
| MF: | Tr-FeB |
| Chemical Name | Iron Boride Powder |
| Color | Grey Powder |
| EINECS Number: | 234-489-9 |
| Purity: | 99.9% |
| Density | ~7 g/cm3 |
| Product Number: | NCZ-NIB-112/20 |
| Cas Number: | 12006-84-8 |
RELATED INFORMATION
Boriding is often used to improve abrasion resistance, corrosion resistance, wear resistance, and oxidation resistance. It is used in oil and gas refinery, chemical extraction, automotive agricultural, stamping, textile extrusion, and injection molding industries. Iron-based coatings recently gained attention for their mechanical, frictional, and corrosion-resistant properties. As compared to the ceramic or cermet type of materials people have used before, iron-based materials are relatively inexpensive, less strategic, and can be produced economically by various thermal methods with ease of fabrication and machining.
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Email: contact@nanochemazone.com
Please contact us for customization and price inquiry
Note: We supply different size ranges of Nano and micron as per the client’s requirements and also accept customization in various parameters.
Niobium Boride Powder
Niobium Boride Powder
Product Name: Niobium Boride Powder
| MF | NbB |
| Chemical Name | Niobium Boride Powder |
| EINECS | 235-723-2 |
| Purity | 99.9% |
| Molecular weight | 103.72 |
| Product Number | NCZ-SC-112/20 |
| Cas Number | 12007-29-3 |
| Density | 7.39g/ml |
Niobium Boride Powder
Niobium boride Powders having NbB, NbB2, and Nb3B4 phases in various amounts and single-phase NbB powders were successfully synthesized by using powder metallurgy methods from related metal oxide raw materials in the presence of a strong reducing agent. Nb2O5, B2O3, and Mg powder blends were milled at room temperature by a high-energy ball mill for a different time. Subsequently, an undesired MgO phase was removed from the milled powders by HCl leaching to constitute NbB–NbB2–Nb3B4 as final products, and they were subjected to an annealing process at 1500 °C for 4 h to observe probable boride transformation. Characterization was carried out by XRD, DSC, PSA, SEM/EDX, TEM, and VSM.
The effects of milling time (up to 9 h) on the formation, microstructure, and thermal behavior of the final products were investigated. The reduction reaction took place after milling stoichiometric powder blends for 2 h. Nano-sized NbB–NbB2–Nb3B4 powders in high purity were obtained in the absence of any secondary phase and any impurity via mechanochemistry by milling for 5 h and leaching with 4 mol/L HCl. After annealing, pure and nano-sized NbB–NbB2–Nb3B4 powders transformed to a single NbB phase without leaving behind NbB2 and Nb3B4 phases.
RELATED INFORMATION
Please email us for the customization.
Email: contact@nanochemazone.com
Please contact us for customization and price inquiry
Note: We supply different size ranges of Nano and micron as per the client’s requirements and also accept customization in various parameters.
Niobium Boride Powder
Niobium Boride Powder
Product Name: Niobium Boride Powder
| MF: | NbB |
| Chemical Name | Niobium Boride Powder |
| EINECS: | 235-723-2 |
| Purity: | 99.9% |
| Molecular weight: | 103.72 |
| Product Number: | NCZ-SC-112/20 |
| Cas Number: | 12619-90-8 |
| Density | 7.39g/ml |
Niobium Boride Powder Related Information
Niobium boride powders having NbB, NbB2 and Nb3B4 phases in various amounts and single phase NbB powders were successfully synthesized by using powder metallurgy methods from related metal oxide raw materials in the presence of a strong reducing agent. Nb2O5, B2O3 and Mg powder blends were milled at room temperature
A high-energy ball mill for different time. Subsequently, an undesired MgO phase was removed from the milled powders by HCl leaching to constitute NbB–NbB2–Nb3B4 as final products, and they were subjected to an annealing process at 1500 °C for 4 h to observe probable boride transformation. Characterization was carried out by XRD, DSC, PSA, SEM/EDX, TEM, and VSM. The effects of milling time (up to 9 h) on the formation, microstructure, and thermal behavior of the final products were investigated.
The reduction reaction took place after milling stoichiometric powder blends for 2 h. Nano-sized NbB–NbB2–Nb3B4 powders in high purity were obtained in the absence of any secondary phase and any impurity via mechanochemistry by milling for 5 h and leaching with 4 mol/L HCl. After annealing, pure and nano-sized NbB–NbB2–Nb3B4 powders transformed into a single NbB phase without leaving behind NbB2 and Nb3B4 phases.
Please email us for the customization.
Email: contact@nanochemazone.com
Please contact us for customization and price inquiry
Note: We supply different size ranges of Nano and micron as per the client’s requirements and also accept customization in various parameters.
Tantalum boride Powder
Product Name: Tantalum boride Powder
| MF: | TaB |
| Chemical Name |
Tantalum boride Powder |
| Color | Gray |
| EINECS | 234-496-7 |
| Purity: | 99.9% |
| Molecular weight: | 191.76 |
| Product Number: | NCZ-SC-116/20 |
| Cas Number: | 12045-19-1 |
| Density: | 14.2 g/cm3 |
Tantalum boride Powder RELATED INFORMATION
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Email: contact@nanochemazone.com
Please contact us for customization and price inquiry
Note: We supply different size ranges of Nano and micron as per the client’s requirements and also accept customization in various parameters.
Zirconium Carbide Powder
Zirconium Carbide Powder
Product Name: Zirconium Carbide Powder
| Product | Zirconium Carbide Powder |
| Colour | Black |
| Purity | ≥ 99.9% |
| Particle size | 1-10 µM (customizable) |
| Ingredient/MF | ZrC |
| Product Code | NCZ-C-110/20 |
| CAS Number | 12070-14-3 |
Zirconium Carbide Powder Description:
Like most carbides of refractory metals, zirconium carbide is sub-stoichiometric, i.e., it contains carbon vacancies.
At carbon contents higher than approximately ZrC0.98 the material contains free carbon.
ZrC reacts with water and acids and is pyrophoric.
It becomes readily oxidized in the air when exposed to elevated temperatures.
It shows a high amount of corrosion resistance property and contains carbon vacancies.
It reacts with water as well as acids.
Application:
1.Used as an abrasive, in metal cladding, in cermet, incandescent filaments, and cutting tools.
2. The mixture of zirconium carbide and tantalum carbide is an important cermet material.
3. Hafnium-free zirconium carbide and niobium carbide can be used as refractory coatings in nuclear reactors.
4. Zirconium carbide is used extensively as a coating of uranium dioxide and thorium dioxide particles of nuclear fuel.
5. The coating is usually deposited by thermal chemical vapor deposition in a fluidized bed reactor.
6. High-temperature wear-resistant surface materials
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Please contact us for customization and price inquiry
Note: We supply different size ranges of Nano and micron as per the client’s requirements and also accept customization in various parameters.

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