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Aluminum Oxide Powder used as Carrier

What does it mean to be an aluminum oxide carrier

Aluminum oxide White powder, molded Aluminum oxide, solid is called carrier. It accounts for approximately 70% of industrial support catalysts. Aluminium oxide comes in many forms. Different forms not only have different properties; even different forms can exhibit different properties due to their different sources.
Aluminum oxide is used as a catalyst. These properties are crucial. Aluminium oxide can be prepared mostly from the hydroxide. Also known as aluminum oxide, hydrate or Aluminum oxide hydrate.

Aluminum oxide carrier shapes

Although aluminum oxide carrier powders are available in commercial quantities, most are moldable. Most aluminum oxide carriers used for catalysts in fixed-bed reactions are spherical, ingot-shaped, and strip-shaped. However, microspherical aluminum oxygen carriers are most commonly used in fluidized beds reactors. Aluminum oxide can be made into specific-shaped carriers, including honeycomb and rings, for catalytic processes like trefoil, ring, or fiber. Aluminium oxide sol can also be purchased in solids. Crystal form, purity and specific surface area are important criteria for choosing aluminum oxide. Bulk density is also an option. Specific surface area for a-aluminumoxide is extremely low, less than 1m2/g. In contrast, the specific surface area for transition aluminum oxide ranges from 10102m2/g to up to 10102m2/g.

Properties of aluminum oxide carriers

Porous materials make up most of the commercial aluminum oxide carriers. The pore sizes and their distributions have a significant impact on the diffusion properties in the catalytic processes. While fine pores have an average size of less than 20mm2, coarse pores are larger and can exceed microns. The species of pore can have a different pore structure. Every type of transition aluminium oxide is water-rich. Additionally, there are exposed aluminum atoms and hydroxyl groups at the surface. Temperature and the prep conditions can affect the surface acidity. Aluminum oxide will have a higher surface acidity due to the presence of halogen and other negative ions. These ions will also promote aluminum oxide's ability to catalyze hydrocarbon cracking or isomerization.

Application of aluminum oxide powder

Catalytic active elements are added to aluminum oxide powder. Supporting catalyst active ingredients with high specific activities is possible with aluminum oxide having a limited specific surface area. This can be used for materials that have a few coarse pores. This type of carrier is able to eliminate pores' diffusion effects and reduce deep oxidation. The support for the oxidation from ethylene to an aluminum oxide catalyst is a-aluminum. A large surface area aluminum oxide can disperse active components easily into tiny particles. The barrier function of the carrier can prevent active components from sticking to the particles. This is the most widely-used aluminum oxide carrier. The aluminum oxide supports can be used to disperse precious metals like platinum, rhodium, and other metals.

Aluminum oxide's aluminum surface acidity combined with the active components form bifunctional catalysts. Platinum-aluminumoxide catalyst for platinum reforming. Aluminum oxide acts not only as a carrier but is also an active component of the catalyst.

Aluminum oxide Powder Price

Price is affected by many things, such as the demand and supply in the market and industry trends. Economic activity and market sentiment are also important.
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Aluminum oxide Powder Supplier

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Is Aluminum Sulfide Soluble in Water?

Aluminum sulfide is moderately water and acid soluble source for uses compatible with sulfates.

It is an inorganic compound with the chemical formula Al2S3. A grey substance, it is also known as dialuminium trisulfide and alum.

Aluminium sulfide is used as a dye fixer for textiles. It has a strong affinity for dyes, so when it is dissolved in large amounts of water that have a neutral or slightly alkaline pH, it produces a gooey substance that helps the dye stick to the fabric fibers.

This substance has many practical uses in the medical field, including its coagulating ability on minor cuts and abrasions as well as deodorant (due to its antibacterial properties). It also is used to adsorb protein antigens in solution, which improves vaccine immunogenicity.

Aluminum sulfide is also a very good chelating agent for protein-bound nucleophiles such as nitric oxide, forming an antibacterial complex that inhibits the formation of harmful enzymes in the body. It is also a good disinfectant for wounds and mucous surfaces, and it can be applied directly to the skin as an antimicrobial ointment.

Aluminium sulfide is a very sensitive substance to moisture, so it needs to be stored in air tight sealed containers or ampoules that can be safely removed from the atmosphere. This can prevent it from hydrolyzing into hydrogen sulfide, an extremely toxic gas.

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What is Aluminum Diboride AlB2 Powder?

Introduction to Aluminum Diboride AlB2 powder Aluminum diboride Or Aluminum Boride, AlB2 This inorganic compound has the chemical name AlB2. It is a binary mixture of aluminum and boron. It is a grey-red, solid that is insoluble in water at both room temperature and pressure. It loses its gloss when heated.
Aluminum diboride This is made from a mixture of fine powdered aluminum and boron, and then reacting with heat. It is one the two compounds of aluminum or boron, AlB12 being the other. They are often called aluminum boride.
Aluminum boride can be dangerous because it reacts to acid and hydrogen to make toxic gases. Aluminum boride can react with hydrochloric Acid to release borane and aluminum cyanide.

Aluminum Diboride Structures AlB2
The structure aluminum boride Similar to the structure of metal interdides, it is dependent mainly on the crystal structures of aluminum and boron. AlB2, AlB4, AlB12, and AlB12 are the aluminum borides. AlB2 is formed when two elements over 600 react to form the diboride AlB2. It is a layered structure that Al atoms directly overlap. A, A and B atoms are filling the triangular column created by the direct overlap Alatoms. This is the boron layer, which is located between the aluminum layers. The graphite-like structure of the boron layer is also similar. The hexagonal network connects the boron molecules. Each Batom is approximately 0.173nm distant from the other B atoms. Additionally, six Al atoms connect to B. These six Al atoms occupy the apex in the triangular column. Dilute hydrochloric Acid can dissolve AlB2 to make a reductive mixture that may contain HB (OH)+. AlB2 is not soluble in dilute sulfuric acids, but it is soluble in nitric. AlB2 was able to decompose AlB12 at 920
Aluminum Diboride AlB2 Properties
Other names aluminum boride, aluminum diboride, AIB2
CAS No. 12041-50-8
Formula compound AlB2
Molecular Weight 48.604
Appearance Solid copper-red
Melting Point 920degC
Boiling Point N/A
Density 3.19g/cm3
Solubility of H2O Insoluble
Exact Mass 49
Aluminum Diboride AlB2 Powder CAS 12041-50-8

Physicochemical properties and applications of aluminum diboride powder AlB2
AlB2 single crystal displays metallic conductivity along an alignment parallel to the hexagonal basis plane. Boron - Aluminum composite aluminum, aluminum alloy reinforced by boron fibr or protective coating of boron fibr. The volume content for boron fiber ranges from 45% to 55%. It has high specific gravity and excellent mechanical properties. The longitudinal tensile and elastic strength of the unidirectionally strengthened boron/aluminum composite vary depending on the material and process. The specific strengths and longitudinal specific elastic module are approximately 35 and 34 respectively, depending on the process and material. It exhibits good fatigue resistance and high strength below 400.
It was used for fan blades in turbojet engines as well as aerospace and structural parts. For manufacturing plate, profile, or more complicated shapes, hot pressing diffusion bonds is used. Continuous casting is also an option to produce different profiles.
Aluminum Boride is used in ceramics as well medical equipment, nuclear energy and refractory ceramics.

Main supplier of aluminum diboride alB2 powder
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Is alumina toxic to the human body?

Can alumina cause cancer in humans? Alumina is often found as alumina, bauxite or both. When aluminum is exposed in the air, it forms alumina and then a thin layer of aluminum on its surface. This makes aluminum resistant to corrosion.
Alumina Is an insoluble compound made of aluminum that doesn't cause any acute toxic effects. While long-term exposure can cause serious health effects and health risks, it's almost impossible for most people to be exposed to alumina in modern times.
This compound is not only irritating to the skin, but also has a mild chronic toxic effect.

For what purpose is alumina being used?
One of the most widely used ceramic materials in technical manufacturing is aluminum oxide or Alumina. It can be used to produce many components across multiple industries. The manufacturing process of alumina injection molding allows for the creation of customized components that can be used in different industries. There are two main purposes for this process:
Medical industry: The chemical properties and hardness of alumina makes it an ideal material for many medical applications including prosthetics, tissue enhancement, replacement bearings, and biomimetic implant designs.
Protective equipment - The light weight and strength of alumina makes it an excellent material for strengthening vehicle armor or making bulletproof synthetic sapphire windows.
Electrical industry This compound is an excellent option for making high temperature furnace insulations and electric insulators. The microchip industry is another major user of Alumina.
Gemstone Industry: The formation of rubies and sapphires is made from alumina. This is how these precious gems can be made.
Applications Alumina is a chemically inert filler that is ideal for heavy pottery, bricks, and plastics. This is a great economic alternative to industrial diamond.

Aluminium oxide nanoparticles
Alumina can be found in different forms such as spherical or hexagonal flake and cubes, cylinders, fibers, flowers, curls, and so on.
A nano-alumina consist of both fibers and rods. Nano alumina is distinguished from regular alumina by its higher elastic modulus, superior thermodynamic and chemical stability and unique optical characteristics.
Fibrous allumina is a high-performance class of inorganic fibres. Most of it is Al203. However, some fibers also include metal oxides such SiO2 (or B2O3). The benefits of this fiber include high strength, exceptional heat resistance, and high temperature resistance to oxidation. It has a high tensile strength and can withstand higher temperatures. Long-term service temperatures are between 1450 and 1600 degrees. Because of its excellent surface activity, you can easily compound it with resin, metal or ceramic matrix, creating composites with outstanding properties that have wide applications. It's considered the highest-potential high temperature material.

High purity of alumina
High purity alumina, a white powder crystallized in crystal form, is usually classified into the following types: 4N (99.999% purity), 3N (99.999% purity), and 5N (99.999% purity).
High purity Alumina is highly sinterable, dispersible, and porosity.
4N high purity aluminum is used most often in rare earth tricolors phosphors as well as energy-saving lanterns and lamps.
5N high-purity alumina used in the manufacture of ceramic separators and sapphire crystals. The excellent mechanical strength and stability of sapphire crystal make it an ideal substrate to LED. It is also easy to clean. High purity 5N Alumina has been in high demand due to the increased demand for energy-saving measures. Also, sapphire is used in the iPhone phone camera. This drives the demand for sapphire glasses in household electronics.
In ceramic separators of lithium batteries, 5N high purity aluminium is used. A nano-alumina coating on the surface can significantly improve safety and high temperature resistance of the lithium battery.
The high-purity alumina is well known for its excellent chemical, mechanical and thermal properties.

Aluminium oxide Price
Price is affected by many things, such as the demand and supply in the market and industry trends. Economic activity. Unexpected events.
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Aluminium oxide Supplier
Technology Co. Ltd. (), is a trustworthy al2o3 producer, and Al2o3 provider with more than 12-years experience. All of our products can be shipped worldwide.

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Hardness of Aluminum Nitride Ceramics

What is Aluminum Nitride Ceramic?

Aluminum nitride clays are ceramics containing aluminum nitride, (AIN), as the main crystal phase. Aluminum nitride is the main raw material used in high thermal conductivity aluminum-nitride ceramic substrates. It has high purity, small particles, and high activity.

Aluminum Nitride Ceramics' Hardness

Aluminum nitride ceramics have become more widely used with the advances in science and technology. The most common uses of aluminum nitride pottery are in aerospace, electronics, semiconductors, and other areas. Aluminum nitride cermics exhibit high strength, hardness and wear resistance. The aluminum nitride clays have a hardness second only to diamond.


Aluminum nitride is a key structural ceramic material. Its chemical formula is ALN. It is superhard and resists wear and oxidation at elevated temperatures. Aluminum nitride ceramics are possible to be made under normal pressure.


First of all, aluminum nitride cermics rank fourth in organic materials after diamond, cubic boron, and boron carbide. Hot-pressing sintering is the best way to obtain high-density aluminium nitride. It has excellent strength and oxidation resistance and can be maintained in place under high temperatures. It can be used for turbine blades in high-temperature, gas turbines. It can be used for wear-resistant sealing and as a heating pad to heat silicon wafers in semiconductor manufacturing.


Aluminum nitride ceramics have a high hardness, making them difficult to process. It can be difficult to process without the use of professional processing technology and advanced equipment. Material can be scrapped if it lacks craftsmanship.


Tech Co., Ltd. is a supplier of aluminum nitride clays. They have more than 12 years' experience in chemical products development and research. We accept payments via Credit Card and Paypal. We will ship goods overseas via FedEx, DHL and by air or sea to our customers.


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Aluminum Nitride – One of The Most Promising Ceramic Materials

Aluminum nitride It's a covalent bonds compound. The chemical formula for the substance is AlN. Aluminum nitride has a hexagonal structure and wurtzite crystal structures. It is nontoxic and is white or offwhite. Aluminum nitride, a ceramic material, has exceptional comprehensive properties.
Aluminum nitride or AlN has the properties of high strength and high volume resistivity. Also, it is thermally expandable to high temperatures. It's used not only as a sintering agent or reinforcing layer in structural ceramics but also for other purposes, particularly in recent years. Its performance in ceramic electronic substrates and packaging materials far surpasses that of aluminum.

The Use of Aluminum Nitride

Used to enhance luminescent materials
Aluminum nitride, also known as AlN, has a maximum band gap of 6.2eV. This gives it a higher photoelectric efficiency than indirect band gap semiconductors. AlN, a vital blue and ultraviolet light emitting material, is used in UV/deep ultraviolet light-emitting devices, ultraviolet laser diodes and UV detectors.

It is used in ceramics, refractory and other materials.
Aluminum nitride can also be used to sinter structural ceramics. You can use the AlN ceramics' heat resistance and corrosion resistance to make high temperature, corrosion resistant parts like crucibles and Al-evaporating dishes.

For composite materials
As packaging materials, epoxy/AlN materials must be able to dissipate heat and thermally. This requirement is increasing. Epoxy resin, a polymer material, is easy to cure and has good chemical and mechanical properties. It also has low thermal conductivity. You can increase the material's strength and thermal conductivity by adding AlN Nanoparticles with high thermal conductivity.

Piezoelectric device application
Aluminum nitride exhibits high resistance, high thermal conductivity (8-10x that of Al2O3), as well as a low expansion coefficient comparable to silicon. It is a great material for high temperature and high power electronic devices.

Apply to substrate material
AlN crystal makes a great substrate for AlGaN, AlN, and AlN epitaxial material. AlN and GaN substrates are better than SiC and sapphire. Also, the stress between the substrate & the epitaxial layers is lower than SiC.

Tech Co., Ltd. () is a professional nitride powder Over 12 years experience in the development and research of chemical products. We accept credit cards, T/T and Paypal payments. We will ship goods overseas via FedEx, DHL and by air or sea to our customers.

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The Applications of Aluminum Nitride Powder

Overview Aluminum Nitride Powder AlN can stabilize to 2200degC. At room temperature, the intensity of AlN is very high. With increasing temperature, it decreases slowly. It is good at resisting thermal shock and has a low thermal conductivity. It has an excellent resistance to corrosion and can be used as a crucible for melting aluminum, pure iron and aluminum alloy. Aluminum nitride has excellent electrical insulation properties and is a promising electrical component.
Aluminium Nitride AlN powder (CAS 24304-00-5
What are the applications of Aluminum Nitride Powder
1. Aluminum nitride is a powder with high purity and low particle sizes. It also has high activity. It is used as the main raw material in high thermal conductivity aluminum Nitride ceramic substrates.
2. High thermal conductivity, low expansion coefficient and high strength make aluminum nitride ceramic substrate a great choice. It is a good substrate and packaging material for large-scale, integrated circuits.
3. Aluminum nitride's hardness is much higher than that of traditional aluminum. It is a brand new ceramic material that wears well, but it cannot be used on parts with severe wear.
4. It can be made using the thermal shock resistance, melt erosion resistance and heat resistance of AlN ceramics. GaAs crystals, GaAs evaporation plate, magnetic fluid power generator devices, high-temperature turbine parts and magnetic fluid power generation device can all be made. The optical properties of this material can be used to create an Infrared windows. Aluminum nitride can be made into high frequency piezoelectric components or ultra-large-scale integrated Circuit substrates.
5. A type of aluminum nitride that is heat-resistant and resistant to molten metallic corrosion, stable to acids, and easily corroded with alkaline solution. When exposed to moist atmosphere, the new surface will form a thin oxide layer. It can be used as an oven and mold material to melt copper, silver and lead. AIN ceramics can be used to replace toxic Beryllium Oxide ceramics in the electronics sector. They have excellent metallization properties.
The supplier Aluminum Nitride Powder
Tech Co., Ltd. () is a professional nitride powder Over 12 years' experience in chemical product development and research. We accept credit cards, T/T and West Union payments. We will ship goods overseas via FedEx, DHL and by air or sea to our customers.
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What is Spherical Aluminum Oxide Al2O3 Used For?

What is Al2O3 Aluminum Oxide? The aluminum oxide type of organic has the chemical formula Al2O3. It is a high-hardness compound.
It is a white, insoluble solid, odorless and tasteless, and extremely tough. The melting point for aluminum oxide is 2054 while the boiling point for it is 2980. Aluminum oxide is a common amphoteric oxide. It dissolves in alkaline and inorganic acids, and is nearly insoluble in water.

Why is Aluminum Oxide Al2O3 so important?
Fillers
Aluminum oxide, which has a chemical inertness and is white, is the most popular filler for plastics. Aluminum oxide is often used as a sunscreen ingredient and can also be found in cosmetics such lipsticks, nail polishes, and blush.

Glass
Many glass formulas include aluminum oxide as an ingredient. Aluminum oxide is an ingredient in many glass formulations. Aluminosilicate glasses are a common type. They usually contain 5-10 percent.

Catalytic
Aluminum oxide can catalyze a wide range of industrial reactions. The Krauss process, which converts hydrogen sulfide exhaust gases into elemental sulfur in refineries, is the most common use of aluminum oxide. It can also dehydrate alcohols to alkenes.
Aluminum oxide can serve as a catalyst carrier for many industrial catalysts, including those used for hydrodesulfurization as well as some Ziegler-Natta polymerization reaction.

Gas purification
Aluminum oxide is widely used for removing water from the airstream.

Abrasive
Aluminum oxide is used to increase its strength and hardness. Natural corundum (an aluminum oxide form) has a Mohs toughness of 9, which is slightly less than diamond. It's widely used as an industrial abrasive. Aluminum oxide crystals can be found in many kinds of sandpaper.
Additionally, it is widely used in grinding operations, including cutting tools, because of its low insulation value and low specific heat. Arroite, a abrasive powder, is used as the main component in the "chalk" at the tip of a cue.
Aluminum oxide powder can be used in scratch repair kits and CD/DVD disc polishing. It is used in toothpaste because of its polished finish. It's also used in microdermabrasion.

Paint
Aluminum oxide flakes are used to create reflective decorative effects in coatings. They can be found in the automotive and cosmetic industries.

Composite fiber
A variety of high-performance applications have been made possible by aluminum oxide in commercial and experimental fiber materials.


What is Spherical Al2O3 Oxide?
Spherical Aluminum Oxide can be used to make aluminum powder. It is made by high-temperature melt injection of an irregular high purity aluminum alloy and then filtered and purified.
High thermal conductivity, high insulation and high hardness are some of the product's outstanding characteristics.
Spherical aluminum dioxide is widely used in thermal interface material, thermal engineering plastics, and aluminum base copper-clad plate filler.

What Are the Properties of Spherical Al2O3 Aluminum Oxide?
High Fill
Silica gel and epoxy are able to be filled with high densities and controlled particle size distributions, resulting in a mixture of low viscosity and high fluidity.

High thermal conductivity
It is spherical in appearance and can achieve multi-directional heat transport, good dispersion within the system and high thermal conductivity with thermal conductive materials.

Low wear & tear"
The equipment lasts longer because of its unique shape.

What is Spherical Al2O3 used for?
Thermal interface materials
Thermal conductive silicone gel, thermal silicone grease, thermal thermal potting adhesive, thermal thermal conductive double-sided glue, phase changing materials, and others.

Thermal engineering polymers
The LED lamp shade, the switch housing, the electronic product housing, heat dissipation elements of electrical products (heat Sink, filler heat dissipation sub-substrate, MC Substrate), etc.

Thermoconductive aluminum base copper clad sheet
High-power LED circuit board, power board, etc.

Spherical Al2O3 Powder price
Price is affected by many factors, including supply and demand in a market, industry trends and economic activity.
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Spherical Al2O3 Powder Manufacturer
Technology Co. Ltd. is a trusted global supplier and manufacturer of chemical materials. We have more than 12 years experience in producing super high-quality chemicals.
Send us an inquiry if you're looking for high-quality Al2O3 powder spherical. (brad@ihpa.net)

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Aluminum Perchlorate

aluminum perchlorate, also known as alum perchlorate or potassium perchlorate, is an important component of the Space Shuttle solid rocket boosters. It is a strong oxidizing agent that consists of a mixture of aluminum powder and a iron oxide catalyst in a rubberized binder.

Its chemical formula is AlCl3 and it has a molecular weight of around 5000. The molecule is covalently bonded with a low melting and boiling point.

The molecule adopts a three-part structure, depending on the temperature and state (solid, liquid, gas). In a solid solution, it is composed of a sheet-like layered cubic close packed layers with centres that exhibit octahedral coordination geometry.

This crystalline compound is widely used as an effective Lewis acid and is a catalyst for a variety of Friedel-Crafts type reactions, acylations and alkylations. It is a powerful catalyst for the polymerization of hydrocarbons, and it also finds use as a reagent in the isomerisation of organic compounds.

As a result, aluminum chloride is used in many industrial processes and it is often in the form of an inorganic salt called aluminium chlorohydrate, which is present in deodorants and antiperspirants. Aluminium chlorohydrate is also a coagulant in water purification.

Safety Information

Aluminum chloride is a corrosive, hygroscopic (it absorbs moisture from the air) and acidic substance. It can cause severe respiratory tract, eye and skin burns when inhaled or swallowed. This material is also flammable, explosive and toxic to aquatic life. It may cause lung damage, and can be dangerous to children and the elderly.

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What is Aluminium-Silicon Alloy?

What is an Aluminium-Silicon Alloy ? Silicon alloy is made up of silicon and alm. It can preserve the exceptional properties of each.
Silicon is useful in casting metal alloys. Because of its fluidity and melting temperature, it reduces shrinkage, solidification time, and is inexpensive as a raw material. Silicon is also very dense (2.34g/cm3). This may help reduce the weight of casting pieces. It is very solubilized in aluminum. Therefore, silicon precipitates in the form almost pure silicon. This makes it more wear-resistant. This material is rich in silicon and aluminum, and has a mature preparation technology.
Si-Al alloy has a density of between 2.4g/cm3 & 2.7g/cm3 and a coefficient of thermal extension (CTE) of between 7-20ppm/. Si-Al alloy's density and thermal expansion factor decreases with increasing silicon content. Si-Al alloy has great properties like good thermal conductivity and high specific strength. It can also be coated with gold, silver or copper. Si-Al alloy can also be weldable with substrate and allows for easy precision machining.
Silicon-aluminum alloy is a promising option for electronic packaging materials, particularly in high tech fields like aerospace, space technology and portable electronic gadgets.

What types of Silicon-Aluminum Alloys is Available?
Four categories can be used to describe the industry's important silicon-aluminum alloy:
Hypoeutectic silica aluminum alloy. The silicon content can range from 9% to 12 percent.
Eutectic silicon aluminium alloy. The silicon content can range from 11%-13%.
Hypereutectic silica aluminum alloy. The silicon content can range from 15% to 20 percent.
High silicon aluminium alloy. Silicon is present in more than 22% of the alloy, mostly 25-70%, but can reach as high as 80%.

What is Aluminum-Silicon Alloy?
High silicon-aluminum alloy material can be used to make lightweight, wear-resistant materials for all types of transport tools, power machinery and special fasteners.
High silicon-aluminum alloy is widely used in automobile engines as cylinder liner and piston, rotor, and brake disc. This alloy has low specific gravity, light weight and good thermal conductivity.
It can also serve as a packaging material for high-power integrated circuits.
Carrier.
Optic frame.
Parts to heat sink.
Al-Si is a strong, compound deoxidizer. It is possible to replace pure aluminum in steelmaking processes, which can increase deoxidizer utilization, purify molten Steel and improve steel quality.

What series is an Aluminum Silicon Alloy?
4XXX series.

What is Silumin, you ask?
Silumin, a series of aluminum alloys that are lightweight and strong made from aluminum-silicon systems like aluminum-silicon, is one such group. Aluminum-silicon alloys typically contain 3% to 25 percent silicon. Al-Si alloys are used primarily for casting. However, they can also be used in powder metallurgy and rapid solidification. The silicon content of alloys that are used in powder metallurgy may be higher than for casting. Silumin is suitable to be used in wet environments due to its high corrosion resistance.

Si Al Alloy Price
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