TC4 ELI Powder
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TC4 ELI Powder
| Product | TC4 ELI Powder | 
| CAS No. | 12070-08-5 | 
| Appearance | Silver-Gray Powder | 
| Purity | ≥99%, ≥99.9%, ≥95%(Other purities are also available) | 
| APS | 1-5 µM, 10-53 µM (Can be customized), Ask for other available size range. | 
| Ingredient | Ti-Al-V | 
| Density | 4.43g/cm3 | 
| Molecular Weight | N/A | 
| Product Codes | NCZ-DCY-259/25 | 
TC4 ELI Description:
TC4 ELI Powder is one of the numerous advanced ceramic materials manufactured by Nanochemazone. Nanochemazone produces too many standard grades when applicable, including Mil Spec (military grade); ACS, Reagent and Technical Grade; Food, Agricultural and Pharmaceutical Grade; Optical Grade, USP and EP/BP (European Pharmacopoeia/British Pharmacopoeia) and follows applicable ASTM testing standards. Typical and custom packaging is available. Additional technical, research and safety (MSDS) information are available. Please request a quote above for more information on lead time and pricing
TC4 ELI Powder Related Information :
Storage Conditions:
Airtight sealed, avoid light and keep dry at room temperature.
Please contact us for customization and price inquiry
Email: [email protected]
Note: We supply different size ranges of Nano and micron as per the client’s requirements and also accept customization in various parameters.
TC4 ELI Powder
TC4 ELI powder is a titanium alloy known for its exceptional mechanical properties and biocompatibility. It is a variant of Ti-6Al-4V alloy, specifically developed for critical applications in industries such as aerospace, medical, automotive, and sports equipment manufacturing. TC4 ELI powder exhibits enhanced purity and reduced interstitial elements, making it highly desirable for various advanced applications.
TC4 ELI powder, also known as Titanium 6Aluminum 4Vanadium ELI powder, is an advanced titanium alloy powder used in various high-performance applications. This guide provides a comprehensive overview of TC4 ELI powder, its properties, applications, suppliers, grades, and comparisons to other titanium powders.
Overview of TC4 ELI Powder
TC4 ELI powder is a high-purity extra low interstitial (ELI) variant of TC4 titanium alloy containing 6% aluminum, 4% vanadium, and low amounts of iron and oxygen.
Compared to other titanium alloys, TC4 ELI offers an excellent combination of high strength, low weight, outstanding corrosion resistance, and biocompatibility. The ELI grade ensures maximum ductility and toughness.
TC4 ELI is suitable for additive manufacturing, metal injection molding, and other powder metallurgy applications. Its fine powders enable complex geometries and thin walls in 3D printed or sintered parts.
TC4 ELI Powder Properties
| Property | Description | 
| Composition | 6% Al, 4% V, 0.08% max Fe, 0.13% max O | 
| Density | 4.43 g/cc | 
| Melting Point | 1604°C | 
| Strength | 895-930 MPa ultimate tensile strength | 
| Ductility | 10-15% elongation | 
| Fatigue Strength | 500-550 MPa | 
| Young’s Modulus | 110 GPa | 
| Thermal Conductivity | 6.7 W/m-K | 
| Electrical Resistivity | 178 μΩ-cm | 
| Coefficient of Thermal Expansion | 8.9 μm/m-°C | 
TC4 ELI provides an optimal balance of high strength-to-weight ratio, fracture toughness, fatigue resistance, and corrosion resistance. The high aluminum and vanadium content contributes to achieving high strength through solid solution strengthening and precipitation hardening heat treatments.
The low interstitial levels ensure improved ductility and fracture toughness compared to standard TC4 grade. Oxygen is limited to 0.13% max to avoid embrittlement. Iron content is also restricted.
Overall, the properties of TC4 ELI make it suitable for critical applications across aviation, space, defense, motorsports, medicine, oil and gas, and more.
Applications and Uses of TC4 ELI Powder
TC4 ELI powder is used to manufacture high-performance parts via additive manufacturing, metal injection molding, hot isostatic pressing, and other powder metallurgy techniques.
Some of the key applications and uses of TC4 ELI powder include:
Applications of TC4 ELI Powder
| Area | Applications | 
| Aerospace | Aircraft structures, engine components, space launch systems | 
| Implants | Orthopedic implants, dental implants, maxillofacial implants | 
| Automotive | Motorsports components, turbocharger wheels | 
| Industrial | Marine hardware, offshore drilling parts, valves, pumps | 
| Energy | Wellhead components, downhole tools, pipelines | 
| Defense | Ballistic armor, weapon components, protective gear | 
In aerospace, TC4 ELI’s high strength-to-weight ratio makes it suitable for flight-critical static and rotating components in airframes, turbines, landing gear etc. Parts can be 3D printed or sintered to near-net shape.
In medical, the biocompatibility and corrosion resistance of TC4 ELI allow its use for orthopedic joint replacements and dental implants. Hip stems, knee implants, and cranial plates can be manufactured.
For motorsports, TC4 ELI can produce lighter and stronger components like connecting rods, intake valves, turbocharger wheels, drive shafts, and chassis parts.
In oil and gas applications, TC4 ELI is chosen for its resistance to corrosive environments. It can produce wellhead hardware, valves, pumps, and consumables like sleeves, plugs, balls, and seats.
The defense sector utilizes TC4 ELI to manufacture ballistic armor plates that stop bullets and shrapnel while minimizing weight. Other military uses include aviation parts and weapon components like barrels, receivers, rails, triggers etc.
Overall, TC4 ELI powder enables lightweight, high-performance metal parts across safety-critical industries by leveraging the latest manufacturing techniques.
Specifications of TC4 ELI Powder
TC4 ELI powder is commercially available in various size distributions, also known as particle size ranges. The powder morphology can be spherical, angular, or a blend.
TC4 ELI Powder Specifications
| Parameter | Details | 
| Particle Size Range | 15-45 microns, 45-105 microns, 105-250 microns | 
| Particle Shape | Spherical, angular, blended | 
| Size Distribution | D10, D50, D90 values | 
| Apparent Density | 2.5-3.5 g/cc | 
| Tap Density | 3.5-4.5 g/cc | 
| Flow Rate | Hall flowmeter measurement | 
| Chemical Analysis | Al, V, Fe, O, N, C, H, Ti | 
| Lot Number | For traceability | 
| Packaging | Vials, jars up to 25 kg | 
Finer particle size distributions from 15-45 microns are preferred for printing complex geometries and achieving smooth surface finishes. Larger sizes over 100 microns allow faster build rates.
Spherical powders improve flowability, packing density, and sintering behavior. Angular and blended powders offer better mechanical adhesion between particles.
Apparent and tap density determine the quantity of powder required to fill a given volume. Flow rates indicate ease of dispensing during printing or injection molding.
Chemical analysis confirms that elemental composition meets grade specifications. Lot numbers provide traceability for quality control. Appropriate packaging maintains powder integrity during handling and storage.
Grades of TC4 ELI Powder
TC4 ELI powder is produced in different grades by varying the post-processing method after gas atomization. This affects the microstructure and mechanical properties.
The main grades include:
| Grade | Description | 
| As-atomized | No post-processing after gas atomization | 
| Annealed | Heat treated to relieve residual stresses | 
| Hot isostatic pressed | Consolidated at high temperature and pressure | 
| Plasma sintered | Rapidly sintered using plasma discharge | 
| ISO-S | Spherical powder made by gas atomization | 
As-atomized grade contains residual stresses from the rapid solidification. Annealing eliminates these stresses and makes the powder easier to work with during printing or molding.
Hipping and plasma sintering increase the density and improve the microstructure and mechanical properties of the final parts.
Spherical grade (ISO-S) offers better flowability and packing density for high quality 3D printing.
The appropriate TC4 ELI powder grade is chosen based on the specific additive manufacturing or powder metallurgy process being used.
How TC4 ELI Powder Compares to Other Titanium Alloys
TC4 ELI offers advantages over other common titanium alloys like Ti-6Al-4V in terms of strength, toughness, and corrosion resistance.
Comparison of TC4 ELI versus Other Titanium Alloys
| Alloy | Strength | Toughness | Corrosion Resistance | Cost | 
| Ti-6Al-4V | Medium | Medium | Medium | Low | 
| Ti-6Al-7Nb | Medium | Medium | High | Medium | 
| Ti-555 (Ti-5Al-5V-5Mo-3Cr) | Very High | Low | Medium | High | 
| TC4 ELI (Ti-6Al-4V-0.08Fe-0.13O) | Very High | High | Very High | High | 
Key advantages of TC4 ELI over other titanium alloys:
Higher strength than Ti-6Al-4V and Ti-6Al-7Nb
Superior fracture toughness and ductility versus Ti-555
Excellent corrosion resistance in harsh environments
Retains properties better at extreme temperatures
Lower density than steel alloys
Better biocompatibility than stainless steels
Can be anodized for color finishes
Limitations of TC4 ELI include:
Higher cost than Ti-6Al-4V
More difficult to machine than Ti-6Al-4V
Susceptible to galling against itself
Not weldable using conventional fusion welding
Still heavier than aluminum alloys
Overall, the combination of exceptional mechanical properties, corrosion resistance, low density, and biocompatibility make TC4 ELI an advanced material of choice for critical applications despite its higher cost.
Frequently Asked Questions about TC4 ELI Powder
Here are answers to some common questions about TC4 ELI powder:
FAQs about TC4 ELI Powder
Q: What does the ELI stand for in TC4 ELI powder?
A: ELI stands for extra low interstitial content. It refers to minimal levels of oxygen and iron in the powder composition.
Q: What particle size of TC4 ELI powder is ideal?
A: 15-45 micron powder works best for printing fine features and thin walls. 45-105 micron allows faster build rates but lower resolution.
Q: What post-processing methods can be used on TC4 ELI powder?
A: Annealing, hot isostatic pressing, plasma sintering, and spherical powder manufacturing improve powder properties.
Q: Is TC4 ELI powder better than Ti-6Al-4V for 3D printing?
A: Yes, TC4 ELI has higher strength and toughness compared to Ti-6Al-4V in as-printed and post-treated states.
Q: Does TC4 ELI powder require hot isostatic pressing after additive manufacturing?
A: HIPing can eliminate internal pores and improve fatigue resistance. But for non-critical parts, as-printed TC4 ELI may suffice.
Q: What precision can be achieved with TC4 ELI powder in metal 3D printing?
A: Tolerances of ±0.1% are possible for TC4 ELI printed parts depending on the AM process used.
Q: Can TC4 ELI parts be machined after 3D printing?
A: Yes, but TC4 ELI is difficult to machine and requires rigid setups and sharp tools due to its hardness.
Q: What finish is possible for TC4 ELI AM parts?
A: As-printed surface roughness varies by process but finishing steps like grinding, EDM, and polishing allow smooth fine finishes.
	
	
			Category: 3D Printing Metal Powder	
				
	
	
			
								
													
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Note: For pricing & ordering information, please get in touch with us at [email protected]
Please contact us for quotes on Larger Quantities and customization. E-mail: [email protected]
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.) is available upon request.
NOTE:
Images, pictures, colors, particle sizes, purity, packing, descriptions, and specifications for the real and actual goods may differ. These are only used on the website for the purposes of reference, advertising, and portrayal. Please contact us via email at [email protected] or by phone at (+1 780 612 4177) if you have any questions.
													
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| CAS No. | 7429-90-5 | 
| Appearance | Grayish Metallic Powder | 
| Purity | ≥99%, ≥99.9%, ≥95%(Other purities are also available) | 
| APS | 1-5 µM, 10-53 µM (Can be customized), Ask for other available size range. | 
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| Manganese (Mn) | 1.0-1.5% | 
| Silicon (Si) | 0.6% max | 
| Iron (Fe) | 0.7% max | 
| Copper (Cu) | 0.10% max | 
| Magnesium (Mg) | 0.10% max | 
| Zinc (Zn) | 0.10% max | 
| Chromium (Cr) | 0.05-0.20% | 
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| Melting Point | 630-654°C | 
| Thermal Conductivity | 130 W/mK | 
| Electrical Conductivity | 41-43% IACS | 
| Young’s Modulus | 70 GPa | 
| Poisson’s Ratio | 0.33 | 
| Tensile Strength | 110-180 MPa | 
| Yield Strength | 55-110 MPa | 
| Elongation | 18-30% | 
| Hardness | 25-55 Brinell | 
| Parameter | Al 3103 | Al 3003 | 
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| CAS No. | 7429-90-5 | 
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| Purity | ≥99%, ≥99.9%, ≥95%(Other purities are also available) | 
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| Silicon dioxide | SiO2 | 0.05% max | 
| Iron oxide | Fe2O3 | 0.08% max | 
| Titanium dioxide | TiO2 | 0.03% max | 
| Sodium oxide | Na2O | 0.05% max | 
| Magnesium oxide | MgO | 0.03% max | 
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| Melting point | 2050°C | 
| Density | 3.95 g/cm3 | 
| Hardness | 9 Mohs | 
| Flexural strength | 330 MPa | 
| Compressive strength | 2600 MPa | 
| Porosity | <1% | 
| Thermal conductivity | 30 W/m.K | 
| Electrical resistivity | >1014 ohm.cm | 
| Dielectric strength | 15-35 kV/mm | 
| Water absorption | 0% | 
| Parameter | α-Al2O3 | γ-Al2O3 | 
| Crystal structure | Hexagonal | Cubic | 
| Density | 3.95 g/cm3 | 3.65 g/cm3 | 
| Hardness | 9 Mohs | 8 Mohs | 
| Melting point | 2050°C | ~1100°C | 
| Thermal conductivity | 30 W/m.K | 5-10 W/m.K | 
| Surface area | <10 m2/g | 100-300 m2/g | 
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| CAS No. | 12604-68-1 | 
| Appearance | Gray Metallic Powder | 
| Purity | ≥99%, ≥99.9%, ≥95%(Other purities are also available) | 
| APS | 1-5 µM, 10-53 µM (Can be customized), Ask for other available size range. | 
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Al 6061 Description:
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| Aluminum (Al) | Balance | 
| Silicon (Si) | 0.4-0.8% | 
| Iron (Fe) | 0-0.7% | 
| Copper (Cu) | 0.15-0.4% | 
| Manganese (Mn) | 0-0.15% | 
| Magnesium (Mg) | 0.8-1.2% | 
| Chromium (Cr) | 0.04-0.35% | 
| Zinc (Zn) | 0-0.25% | 
| Titanium (Ti) | 0-0.15% | 
| Parameter | Al 6061 | Al 7075 | 
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| Mg content | 0.8-1.2% | 2.1-2.9% | 
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| Product | AlSi10Mg Powder | 
| CAS No. | N/A | 
| Appearance | Gray-Silver Metallic Powder | 
| Purity | ≥99%, ≥99.9%, ≥95%(Other purities are also available) | 
| APS | 1-5 µM, 10-53 µM (Can be customized), Ask for other available size range. | 
| Ingredient | AlSi10Mg | 
| Density | 1.2-1.5g/cm3 | 
| Molecular Weight | N/A | 
| Product Codes | NCZ-DCY-192/25 | 
AlSi10Mg Description:
AlSi10Mg Powder is one of the numerous advanced ceramic materials manufactured by Nanochemazone. Nanochemazone produces too many standard grades when applicable, including Mil Spec (military grade); ACS, Reagent and Technical Grade; Food, Agricultural and Pharmaceutical Grade; Optical Grade, USP and EP/BP (European Pharmacopoeia/British Pharmacopoeia) and follows applicable ASTM testing standards. Typical and custom packaging is available. Additional technical, research and safety (MSDS) information are available. Please request a quote above for more information on lead time and pricingALSi10Mg Powder Related Information :
Storage Conditions: Airtight sealed, avoid light and keep dry at room temperature. Please contact us for customization and price inquiry Email: [email protected] Note: We supply different size ranges of Nano and micron as per the client’s requirements and also accept customization in various parameters. mize health and safety risks. AlSi10Mg powder AlSi10Mg powder is a composite material composed of aluminum (Al), silicon (Si), and magnesium (Mg). It is specifically designed for use in additive manufacturing processes, where it is used as a feedstock material for 3D printers.| Metal Powder | Size | Quantity | Price/kg | Size | Quantity | Price/kg | 
| AlSi10Mg | 15-45μm | 1KG | 70 | 15-53μm | 1KG | 51 | 
| 10KG | 42 | 10KG | 33 | |||
| 100KG | 34.6 | 100KG | 23.5 | 
| Element | Weight % | 
| Aluminum (Al) | Base/remainder | 
| Silicon (Si) | 9-11% | 
| Magnesium (Mg) | 0.2-0.45% | 
| Other (Fe, Mn, etc.) | < 0.55% total | 
| Element | Minimum wt% | Maximum wt% | 
| Aluminum | Bal. | Bal. | 
| Silicon | 9 | 11 | 
| Magnesium | 0.2 | 0.45 | 
| Other | – | 0.55 | 
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| Density | 2.67 g/cc | 
| Melting Point | ~615°C | 
| Thermal Conductivity | 130 W/m-K | 
| Electrical Resistivity | 4-8 x 10^-8 Ωm | 
| Young’s Modulus | 70-80 GPa | 
| Poisson’s Ratio | 0.33 | 
| Yield Strength | 215-365 MPa | 
| Tensile Strength | 330-430 MPa | 
| Elongation | 8-10% | 
| Hardness | 80-100 Brinell | 
| Sector | Typical Applications | 
| Aerospace | Turbine blades, structural brackets, rocket nozzles, satellites | 
| Automotive | Powertrain, pistons, turbochargers, heat exchangers | 
| Industrial | Robotics, tooling, jigs and fixtures | 
| Medical | Orthopedic implants, prosthetics | 
| General | Heat sinks, hydraulic manifolds, housings | 
| Process | Heat Source | Description | 
| SLM | Laser | Selective laser melting | 
| DMLS | Laser | Direct metal laser sintering | 
| EBM | Electron beam | Electron beam melting | 
| Binder jetting | Liquid binder | Binder printed, then sintered | 
| Cold spray | Kinetic | Powder sprayed onto substrate | 
| Parameter | Typical Value | Role | 
| Particle shape | Spherical >90% | Flowability, density | 
| Particle size (μm) | 15-45 | Density, resolution | 
| Flow rate (s/50g) | 23-27 | Powder bed packing | 
| Apparent density (g/cc) | 1.2-1.6 | Recyclability | 
| Tap density (g/cc) | 2.2-2.7 | Green density | 
| Purity | >99.5% | Defect reduction | 
| Oxygen (ppm) | <1000 | Clean melting | 
- What is the chemical composition of AlSi10Mg powder?
- The typical composition is aluminum base with 9-11% silicon and 0.2-0.45% magnesium. Remaining is other trace elements at <0.55% total.
- What is the density of AlSi10Mg and AlSi10Mg powder?
- The density is around 2.67 g/cc for both the bulk alloy and the powder form.
- What are the mechanical properties of AlSi10Mg parts made by AM?
- Printed AlSi10Mg has a tensile strength of 330-430 MPa, yield strength of 215-365 MPa, and elongation of 8-10% in the as-built condition. Heat treatment can further improve properties.
- What particle size is recommended for AlSi10Mg powder in AM?
- A particle size range of 15-45 microns is commonly used, though size distributions can be optimized for specific printers and layer thickness requirements.
- Can you machine/weld AlSi10Mg AM parts?
- Yes, AlSi10Mg parts made by 3D printing can be machined and welded via conventional methods after an appropriate stress relief heat treatment.
- Is AlSi10Mg powder reusable?
- AlSi10Mg powder can typically be recycled 5-10 times before a refresh is needed, depending on AM process and contamination levels.
AlSi12 Powder
				
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		AlSi12 Powder
| Product | AlSi12 Powder | 
| CAS No. | 11145-27-0 | 
| Appearance | Silvery-Gray Powder | 
| Purity | ≥99%, ≥99.9%, ≥95%(Other purities are also available) | 
| APS | 1-5 µM, 10-53 µM (Can be customized), Ask for other available size range. | 
| Ingredient | Al88Si12 | 
| Density | 2.7g/cm3 | 
| Molecular Weight | N/A | 
| Product Codes | NCZ-DCY-193/25 | 
AlSi12 Description:
AlSi12 Powder is one of the numerous advanced ceramic materials manufactured by Nanochemazone. Nanochemazone produces too many standard grades when applicable, including Mil Spec (military grade); ACS, Reagent and Technical Grade; Food, Agricultural and Pharmaceutical Grade; Optical Grade, USP and EP/BP (European Pharmacopoeia/British Pharmacopoeia) and follows applicable ASTM testing standards. Typical and custom packaging is available. Additional technical, research and safety (MSDS) information are available. Please request a quote above for more information on lead time and pricingAlSi12 Powder Related Information :
Storage Conditions: Airtight sealed, avoid light and keep dry at room temperature. Please contact us for customization and price inquiry Email: [email protected] Note: We supply different size ranges of Nano and micron as per the client’s requirements and also accept customization in various parameters. AlSi12 Powder AlSi12 powder is a fine-grained aluminum-silicon alloy powder commonly used in additive manufacturing processes. It is produced by atomization, which involves melting the alloy and rapidly cooling it to form small powder particles. The resulting powder exhibits excellent flowability and can be easily processed using various additive manufacturing techniques such as selective laser melting (SLM) and electron beam melting (EBM) Overview of AlSi12 Powder AlSi12 or A413 is an aluminum casting alloy with relatively high silicon content. The addition of 12% silicon results in good wear resistance, low coefficient of thermal expansion, and high thermal conductivity. Key properties of AlSi12 powder include: Good strength and hardness Excellent wear resistance Good dimensional stability High thermal conductivity Good machinability and polishability Low specific gravity Available in various particle size distributions AlSi12 is used for producing cylinder liners, piston rings, rocker arms, connecting rods, parts requiring heat and wear resistance. The powder metallurgy approach enables complex geometries. Composition of AlSi12 Powder The typical composition of AlSi12 powder is:| Element | Weight % | 
| Aluminum (Al) | Balance | 
| Silicon (Si) | 11-13% | 
| Copper (Cu) | <1% | 
| Magnesium (Mg) | <1% | 
| Iron (Fe) | <1% | 
| Manganese (Mn) | <1% | 
| Zinc (Zn) | <1% | 
| Nickel (Ni) | <0.5% | 
| Property | Value | 
| Density | 2.7 g/cc | 
| Melting Point | 560°C | 
| Thermal Conductivity | 150-180 W/mK | 
| Electrical Resistivity | 4-6 μΩ.cm | 
| Young’s Modulus | 80-90 GPa | 
| Poisson’s Ratio | 0.33 | 
| Tensile Strength | 240-300 MPa | 
| Compressive Strength | 600-650 MPa | 
| Elongation | 3-5% | 
| Hardness | 80-90 Brinell | 
| Parameter | AlSi12 Powder | AlSi10Mg Powder | 
| Alloy type | Cast alloy | Wrought alloy | 
| Si content | 11-13% | 9-11% | 
| Mg content | <1% | 0.2-0.5% | 
| Strength | Higher | Lower | 
| Wear resistance | Excellent | Good | 
| Corrosion resistance | Moderate | Excellent | 
| Machineability | Very good | Moderate | 
| Applications | Wear parts, thermal management | Aerospace, marine parts | 
| Cost | Lower | Higher | 
AlSi7Mg Powder
				
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		AlSi7Mg Powder
| Product | AlSi7Mg Powder | 
| CAS No. | N/A | 
| Appearance | Silver-Gray Powder | 
| Purity | ≥99%, ≥99.9%, ≥95%(Other purities are also available) | 
| APS | 1-5 µM, 10-53 µM (Can be customized), Ask for other available size range. | 
| Ingredient | Al-7Si-0.3Mg | 
| Density | 2.65-2.68g/cm3 | 
| Molecular Weight | N/A | 
| Product Codes | NCZ-DCY-195/25 | 
AlSi7Mg Description:
AlSi7Mg Powder is one of the numerous advanced ceramic materials manufactured by Nanochemazone. Nanochemazone produces too many standard grades when applicable, including Mil Spec (military grade); ACS, Reagent and Technical Grade; Food, Agricultural and Pharmaceutical Grade; Optical Grade, USP and EP/BP (European Pharmacopoeia/British Pharmacopoeia) and follows applicable ASTM testing standards. Typical and custom packaging is available. Additional technical, research and safety (MSDS) information are available. Please request a quote above for more information on lead time and pricingAlSi7Mg Powder Related Information :
Storage Conditions: Airtight sealed, avoid light and keep dry at room temperature. Please contact us for customization and price inquiry Email: [email protected] Note: We supply different size ranges of Nano and micron as per the client’s requirements and also accept customization in various parameters. AlSi7Mg powder AlSi7Mg powder is an aluminum alloy powder that primarily consists of aluminum (Al), silicon (Si), and magnesium (Mg). The “7” in its name signifies the percentage of silicon, while “Mg” represents the magnesium content. This powder exhibits excellent strength, low density, and impressive thermal properties, making it a preferred choice in multiple industries. Overview of AlSi7Mg Powder AlSi7Mg or A357 alloy is a versatile foundry alloy that possesses properties between pure aluminum and high-silicon hypereutectic alloys. The silicon additions improve castability and enhance mechanical properties while magnesium improves strength. Key characteristics of AlSi7Mg powder include: Good strength and hardness Excellent fluidity and castability Good machinability and polishability High thermal conductivity Good corrosion resistance Low coefficient of thermal expansion Available in range of particle sizes AlSi7Mg powder is used for producing automotive components, hydraulic parts, and other precision castings needing balanced properties. Chemical Composition of AlSi7Mg Powder| Element | Weight % | 
| Aluminum (Al) | Balance | 
| Silicon (Si) | 6-8% | 
| Magnesium (Mg) | 0.4-0.8% | 
| Iron (Fe) | 0.15-0.5% | 
| Manganese (Mn) | 0.1% max | 
| Copper (Cu) | 0.1% max | 
| Zinc (Zn) | 0.1% max | 
| Titanium (Ti) | 0.25% max | 
| Property | Value | 
| Density | 2.68 g/cm3 | 
| Melting Point | ~600°C | 
| Thermal Conductivity | 130-160 W/mK | 
| Electrical Resistivity | 3-5 μΩ.cm | 
| Young’s Modulus | 70-80 GPa | 
| Poisson’s Ratio | 0.33 | 
| Tensile Strength | 250-300 MPa | 
| Yield Strength | 140-180 MPa | 
| Elongation | 4-8% | 
| Hardness | 80-100 Brinell | 
| Parameter | AlSi7Mg | AlSi10Mg | 
| Silicon content | 6-8% | 9-11% | 
| Strength | Lower | Higher | 
| Castability | Comparable | Comparable | 
| Corrosion resistance | Good | Excellent | 
| Cost | Lower | Higher | 
| Applications | Castings, MIM | Aerospace, AM parts | 
| Availability | Readily available | Moderate | 
Aluminum Alloy Powder
				
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		Aluminum Alloy Powder
| Product | Aluminum Alloy Powder | 
| CAS No. | 7429-90-5 | 
| Appearance | Silvery-Gray or White Powder | 
| Purity | ≥99%, ≥99.9%, ≥95%(Other purities are also available) | 
| APS | 1-5 µM, 10-53 µM (Can be customized), Ask for other available size range. | 
| Ingredient | Al | 
| Density | 2.66g/cm3 | 
| Molecular Weight | 26.98g/mol | 
| Product Codes | NCZ-DCY-198/25 | 
Aluminum Alloy Description:
Aluminum Alloy Powder is one of the numerous advanced ceramic materials manufactured by Nanochemazone. Nanochemazone produces too many standard grades when applicable, including Mil Spec (military grade); ACS, Reagent and Technical Grade; Food, Agricultural and Pharmaceutical Grade; Optical Grade, USP and EP/BP (European Pharmacopoeia/British Pharmacopoeia) and follows applicable ASTM testing standards. Typical and custom packaging is available. Additional technical, research and safety (MSDS) information are available. Please request a quote above for more information on lead time and pricingAluminum Alloy Powder Related Information :
Storage Conditions: Airtight sealed, avoid light and keep dry at room temperature. Please contact us for customization and price inquiry Email: [email protected] Note: We supply different size ranges of Nano and micron as per the client’s requirements and also accept customization in various parameters. Aluminum alloy series The aluminum alloy family is a family of materials with a variety of unique properties and areas of application. Their characteristics mainly depend on the alloying elements contained in them and their proportions. These ranges offer a wide range of opportunities to meet the needs of different industries. Let’s explore the features and typical applications of each series to better understand how to choose the best aluminum alloy material for your project.| roduct | Specification | Apparent Density | Flow Ability | Oxygen Content | Tensile Strength | Yield Strength | Elongation | 
| AISi10Mg | 15-53µm 45-105µm 75-150µm | ≥1.35g/cm³ | ≤80s/50g | ≤300ppm | 300±20Mpa | 200±20Mpa | 20±2% | 
| AMgScZr | ≥1.30g/cm³ | ≤80s/50g | ≤300ppm | 545±20Mpa | 500±20Mpa | 10±2% | |
| AK400 (can be anodized) | ≥1.30g/cm³ | ≤80s/50g | ≤300ppm | 430±20Mpa | 300±20Mpa | 10±2% | |
| Pure aluminum powder (purity 99.8%) | ≥1.20g/cm³ | ≤100s/50g | ≤1000ppm | \ | \ | 
 
	
 
				 
				 
		 
		 
		 
		 
		 
		 
		 
		
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