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Refractory HEA Powder



  • Aluminum-molybdenum-niobium-tantalum-titanium-zirconium alloy powder is a high-entropy alloy powder system composed of six metal elements: aluminum (Al), molybdenum (Mo), niobium (Nb), tantalum (Ta), titanium (Ti), and zirconium (Zr). This alloy, relying on the synergistic effect of multiple elements, breaks through the performance limitations of traditional alloys and achieves significant improvements in mechanical properties, corrosion resistance, high-temperature resistance, etc., becoming a key material in high-end manufacturing fields such as aerospace, energy, and chemical engineering.

    Hot Tags : Aluminum-molybdenum-niobium-tantalum-titanium-zirconium alloy Aluminum-molybdenum-niobium-tantalum-titanium-zirconium 3D printing Aluminum-molybdenum-niobium-tantalum-titanium-zirconium alloy Metal 3D printing Aluminum-molybdenum-niobium-tantalum-titanium-zirconium alloy refractory metal Alloy powder

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  • Titanium-zirconium-niobium-tantalum-nickel alloy is a multi-element alloy system composed of five metal elements: titanium (Ti), zirconium (Zr), niobium (Nb), tantalum (Ta), and nickel (Ni). This alloy has achieved multi-dimensional optimization of mechanical properties, corrosion resistance, biocompatibility and processing performance through the synergistic effect among elements, and has shown great application potential in fields such as aerospace, biomedicine, chemical engineering and energy.

    Hot Tags : Titanium-zirconium-niobium-tantalum-nickel alloy Titanium-zirconium-niobium-tantalum-nickel 3D printing Titanium-zirconium-niobium-tantalum-nickel alloy Metal 3D printing Titanium-zirconium-niobium-tantalum-nickel alloy refractory metal Alloy powder

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  • Titanium-zirconium-tantalum alloy (Ti-ZR-TA) is a ternary alloy system formed by adding zirconium (Zr) and tantalum (Ta) to titanium (Ti) as the matrix. The typical components are Ti-15Zr-10TA and Ti-20Zr-15TA (by mass fraction), and the performance can be precisely regulated through micro-alloying (such as Nb, Sn). Its unique advantages stem from the synergistic effect of the three elements, forming a multi-dimensional performance matrix of "light weight and high strength - super corrosion resistance - biocompatibility".

    Hot Tags : Titanium-zirconium-tantalum alloy Titanium-zirconium-tantalum 3D printing Titanium-zirconium-tantalum alloy Metal 3D printing Titanium-zirconium-tantalum alloy refractory metal Alloy powder

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  • Titanium-zirconium-molybdenum alloy (Ti-ZR-Mo) is a ternary alloy system formed by titanium (Ti) as the matrix and the addition of zirconium (Zr) and molybdenum (Mo). The typical components are Ti-15Zr-4Mo and Ti-35Zr-10Mo (by mass fraction), and the performance can be optimized by adding trace amounts of niobium (Nb) and tin (Sn). It features high sphericity and excellent fluidity, controllable particle size, high purity and low oxygen content, high melting point and high-temperature stability, high strength and good plasticity, corrosion resistance and biocompatibility, low density and high specific strength, and other superior properties. It is mainly used in 3D printing additive manufacturing, powder metallurgy, hot isostatic pressing, etc., and can be applied in fields such as aerospace, energy and nuclear industry, electronics and advanced manufacturing, and biomedicine.

    Hot Tags : Titanium-zirconium-molybdenum alloy Titanium-zirconium-molybdenum 3D printing Titanium-zirconium-molybdenum alloy Metal 3D printing Titanium-zirconium-molybdenum alloy refractory metal Alloy powder

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  • Titanium-zirconium-molybdenum alloy (Ti-ZR-Mo) is a ternary alloy system formed by titanium (Ti) as the matrix and the addition of zirconium (Zr) and molybdenum (Mo). The typical components are Ti-15Zr-4Mo and Ti-35Zr-10Mo (by mass fraction), and the performance can be optimized by adding trace amounts of niobium (Nb) and tin (Sn). It features high sphericity and excellent fluidity, controllable particle size, high purity and low oxygen content, high melting point and high-temperature stability, high strength and good plasticity, corrosion resistance and biocompatibility, low density and high specific strength, and other superior properties. It is mainly used in 3D printing additive manufacturing, powder metallurgy, hot isostatic pressing, etc., and can be applied in fields such as aerospace, energy and nuclear industry, electronics and advanced manufacturing, and biomedicine.

    Hot Tags : Titanium-zirconium-molybdenum alloy Titanium-zirconium-molybdenum 3D printing Titanium-zirconium-molybdenum alloy Metal 3D printing Titanium-zirconium-molybdenum alloy refractory metal Alloy powder

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  • Spherical W-Ni-Fe alloy powder is a high-performance powder material composed of tungsten, nickel and iron, with excellent high density, high melting point, good mechanical properties, thermal conductivity and corrosion resistance. It is widely used in electronics, aerospace, military and powder metallurgy fields, and is often used to manufacture high temperature resistant and wear resistant parts.
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  • Spherical W-Mo-Ta-Nb alloy powder is a metal powder that is often used in the manufacture of reinforced materials or for special industrial applications. This alloy powder is usually composed of elements such as tungsten (W), molybdenum (Mo), tantalum (Ta) and niobium (Nb), and the combination of these elements can provide high strength, wear resistance and corrosion resistance. The shape of the spherical powder helps improve its flowability and compactability, allowing for more uniform distribution and mixing during the manufacturing process.
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  • Spherical WTiZrNbTa refractory alloy powder is composed of refractory metal elements such as tungsten (W), titanium (Ti), zirconium (Zr), niobium (Nb) and tantalum (Ta), and has excellent high temperature resistance, corrosion resistance and mechanical strength. The alloy powder is prepared by powder metallurgy processes such as gas atomization. The particles are spherical and have good fluidity and compactness. They are suitable for additive manufacturing (3D printing) and metal injection molding (MIM). Spherical WTiZrNbTa alloy powder is widely used in aerospace, military, nuclear energy and other fields, especially for high-performance material requirements in high temperature and highly corrosive environments.
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  • Spherical VCr₄Ti₄ alloy powder is a high-performance alloy powder composed of vanadium (V), chromium (Cr) and titanium (Ti), with excellent high-temperature stability, oxidation resistance and good mechanical properties. The alloy powder is prepared by powder metallurgy process, the particles are spherical, with good fluidity and compactness, suitable for applications such as metal injection molding (MIM) and additive manufacturing (3D printing). Spherical VCr₄Ti₄ alloy powder is widely used in the manufacture of aerospace, military and high-temperature components, and can maintain excellent performance in extreme temperature and high-pressure environments.
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  • Spherical W-Ni-Fe alloy powder is a high-performance powder material composed of tungsten, nickel and iron, with excellent high density, high melting point, good mechanical properties, thermal conductivity and corrosion resistance. It is widely used in electronics, aerospace, military and powder metallurgy fields, and is often used to manufacture high temperature resistant and wear resistant parts.
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  • Spherical TaNbVTi high entropy alloy powder is composed of four refractory metal elements: tantalum (Ta), niobium (Nb), vanadium (V) and titanium (Ti). It has a high entropy effect, which gives it excellent high temperature resistance, corrosion resistance and good mechanical properties. The alloy powder exhibits strong strength and fatigue resistance in high temperature environments and is suitable for aerospace, military and high temperature structural materials. Prepared by powder metallurgy processes such as gas atomization, the alloy powder is spherical, has good fluidity and compactness, and is suitable for high-precision applications such as additive manufacturing and 3D printing.
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  • Spherical TaNbZrV high entropy alloy powder is composed of four refractory metal elements: tantalum (Ta), niobium (Nb), zirconium (Zr) and vanadium (V). It has a high entropy effect, which gives it excellent high temperature resistance, corrosion resistance and good mechanical properties. This alloy powder exhibits strong strength and fatigue resistance in high temperature environments and is suitable for high-demand applications such as aerospace, military and nuclear energy. Prepared by advanced powder metallurgy processes such as gas atomization, the alloy powder is spherical, has good fluidity and compactness, and is suitable for technologies such as additive manufacturing and 3D printing.
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About us
STARDUST TECHNOLOGY(GUANGDONG) CO.,LTD.
  Stardust company primary products include spherical tantalum powder and tantalum alloy powder, spherical tungsten & tungsten alloy powder, spherical molybdenum and molybdenum powder, spherical niobium and niobium alloy powder, spherical titanium and spherical titanium alloy powder, Spherical refractory high entropy alloy powder, and high-end rare refractory metal and compound spherical powder, and also provide RF plasma spherodization service, plasma rotating electrode atomization service, 3D printing service, hot isostatic pressing, injection molding, powder metallurgy and other technical services.   Stardust Technology (Guangdong) Co., Ltd. is a high-tech enterprise specializing in the research and development, production and sales of high-end spherical powder materials for 3D printing, powder metallurgy, surface engineering and other fields. The company adheres to the RF plasma spheroidization metal powder technology as the guidance, to provide international advanced products and application solutions.   The company is jointed venture by Foshan Stardust Information Consulting Partnership (Limited Partnership), Guangdong Province Institute of Materials and Processing, and Guangdong Province Academy of Sciences Foshan City Industrial Technology Research Institute Co., LTD.It has a powerful R & D center and a complete technical support team. The company relies on a team from the Materials and Processing Institute of Guangdong Academy of Sciences.     The institute focuses on the improvement of powder manufacturing equipment and the application and promotion of powder metallurgy products. It has established "National Titanium and Rare Metal Powder Metallurgy Engineering Technology Research Center", "Guangdong Province Metal Powder Materials Engineering Technology Research Center", "Guangzhou CityPowder Materials and Precision Parts Manufacturing Engineering Technology Research Center".   Currently, there are 2 academicians of the Chinese Academy of Engineering. We have international leading high-end powder manufacturing equipments and forming equipments such as Canadian TEKNA RF plasma spheroidization equipment, Ukrainian plasma rotating electrode atomization equipment, Swedish Quintus hot isostatic pressing equipment and German EOS 3D printing equipment. Looking forward to cooperate with you.
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STARDUST TECHNOLOGY(GUANGDONG) CO.,LTD.
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About us
STARDUST TECHNOLOGY(GUANGDONG) CO.,LTD.
  Stardust company primary products include spherical tantalum powder and tantalum alloy powder, spherical tungsten & tungsten alloy powder, spherical molybdenum and molybdenum powder, spherical niobium and niobium alloy powder, spherical titanium and spherical titanium alloy powder, Spherical refractory high entropy alloy powder, and high-end rare refractory metal and compound spherical powder, and also provide RF plasma spherodization service, plasma rotating electrode atomization service, 3D printing service, hot isostatic pressing, injection molding, powder metallurgy and other technical services.   Stardust Technology (Guangdong) Co., Ltd. is a high-tech enterprise specializing in the research and development, production and sales of high-end spherical powder materials for 3D printing, powder metallurgy, surface engineering and other fields. The company adheres to the RF plasma spheroidization metal powder technology as the guidance, to provide international advanced products and application solutions.   The company is jointed venture by Foshan Stardust Information Consulting Partnership (Limited Partnership), Guangdong Province Institute of Materials and Processing, and Guangdong Province Academy of Sciences Foshan City Industrial Technology Research Institute Co., LTD.It has a powerful R & D center and a complete technical support team. The company relies on a team from the Materials and Processing Institute of Guangdong Academy of Sciences.     The institute focuses on the improvement of powder manufacturing equipment and the application and promotion of powder metallurgy products. It has established "National Titanium and Rare Metal Powder Metallurgy Engineering Technology Research Center", "Guangdong Province Metal Powder Materials Engineering Technology Research Center", "Guangzhou CityPowder Materials and Precision Parts Manufacturing Engineering Technology Research Center".   Currently, there are 2 academicians of the Chinese Academy of Engineering. We have international leading high-end powder manufacturing equipments and forming equipments such as Canadian TEKNA RF plasma spheroidization equipment, Ukrainian plasma rotating electrode atomization equipment, Swedish Quintus hot isostatic pressing equipment and German EOS 3D printing equipment. Looking forward to cooperate with you.
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  • SPHEROIDIZATION
    SPHEROIDIZATION

    To achieve optimum flow characteristics and high packing density, an ideal Additive Manufacturing (AM) metal powder should be highly spherical in shape with no satellites. As spherical particles have minimum surface area to volume ratio this brings an added advantage in principle, of reduced surface contamination e.g. oxygen pick up. Increased particle sphericity can improve powder feeding, resulting in smoother layers, improved packing density, increased heat conduction in the powder bed and an enhanced melting profile. Generating a component by AM, also known as metal 3D Printing, relies on building the final design through a series of many thousands of layers. Whilst different metal powders can be selected according to the required performance of the final part, reproducible behavior of the powder throughout the process is key to a successful build.  

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  • NANOPOWDER SYNTHESIS
    NANOPOWDER SYNTHESIS

    We develop handled-dimensions nanoscale powders rich in purity stage in commercial volume. Our plasma approach allows us to manufacture nanomaterials including natural metals, alloys and ceramics (oxides and non-oxides).   Our accepted approach allows us to management the formula and nanostructure of our components through chemical substance allergic reactions arranged during functionality.   Each and every period of our nanopowder production is strictly controled. They may be developed and manufactured in our grow to be able to fulfill the particular demands of your respective company.

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  • DEPOSITION
    DEPOSITION

    Our powder solutions allow producing metal and ceramic deposit of great purity and high occurrence by laser. Throughout each stage of your deposition approach the plasma solutions are under whole computerised management. These units are designed and made in our plants as a way to fulfill the specific requires of your organization, from investigation & advancement to manufacturing creation. These items are highly appreciated by manufacturing or investigation locations wishing to build or develop great-functionality coating deposit. d in your herb as a way to fulfill the specific requires of your organization.

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Application

We can not only provide relatively mature research on metal spheroidization services but also provide 3D printing services , 3D printing machines and devices .

Preparation of spherical niobium powder by radio frequency plasma
ADDITIVE MANUFACTURING
3D Printing of Tantalum Medical Metal Materials
PLASMA SPHEROIDIZATION
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