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Metal Alloy

Metal Alloy High Purity Tungsten Crucibles

About Metal Alloy High Purity Tungsten Crucibles:

Chemical composition:

Metal Alloy High Purity Tungsten Crucibles Properties

Other NamesTungsten Crucible
CAS No.N/A
Compound FormulaW
Molecular WeightN/A
Appearancecrucible
Melting PointN/A
Solubility in waterN/A
Density>=19.15g/cm3
Purity>=99.95%
Sizecustomized
Boling pointN/A
Specific HeatN/A
Thermal ConductivityN/A
Thermal ExpansionN/A
Young's ModulusN/A
Exact MassN/A
Monoisotopic MassN/A
  
  

Metal Alloy High Purity Tungsten Crucibles Health & Safety Information

Safety WarningN/A
Hazard StatementsN/A
Flashing pointN/A
Hazard CodesN/A
Risk CodesN/A
Safety StatementsN/A
RTECS NumberN/A
Transport InformationN/A
WGK GermanyN/A
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Metal Alloy

Pre-alloyed Iron Copper FeCu Powder

About Pre-alloyed Iron Copper FeCu Powder:
Copper-iron alloy is also a kind of alloy. Fe-Cu powder has excellent electrical conductivity, thermal conductivity, ductility and corrosion resistance, which combines the advantages of copper and iron. An alloy in which copper is the main element and iron is added. Ferroalloy also has uniform composition, reasonable structure, smooth surface, easy storage and handling, as a middle alloy, added to the copper casting, has good deoxidization, fluidity and other characteristics. A small number of rare earth can be added to refine a copper-iron alloy, and copper and iron melt at a similar temperature of about 1,200 degrees, making them perfectly compatible.
Many pure metals have unique properties that we need in some applications. For example in the case of copper, this metal provides excellent corrosion resistance in brine environments. It also has great electrical and thermal conductivity, as it is often used for electronic and electrical wiring. Other properties of copper include ductility, ductility, and softness.
However, pure metals themselves also have negative properties, which will ruin the application. In the case of copper, the metal is very weak. Although work hardening can be used to strengthen it, another way to make it stronger is to add other metals, such as iron.
Like copper, iron is malleable and malleable. It also has good electrical conductivity and tensile strength because it can be stretched without breaking. However, iron is corrosive because it oxidizes to form rust in the presence of water and oxygen.
Sometimes the addition of iron to copper alloys has a positive effect. Some of the main benefits of adding iron to the copper alloy are increased tensile strength and corrosion resistance without compromising the original electrical conductivity of the copper alloy.
Copper - iron alloy: Copper - iron (CuFe) master alloy has high tensile strength, corrosion resistance and high thermal and electrical conductivity. This master alloy is used as a grain refiner when added to other copper alloys such as aluminum bronze and brass. It usually helps to improve the mechanical properties of low alloy copper.
A low copper alloy can become a high copper alloy when iron and other metals are added. They are extremely strong and have a conductivity of 75 to 90 percent. Orachemicals is a trusted global Pre-alloyed Iron Copper FeCu Powder supplier. Feel free to send an inquiry about the latest price of Iron Copper FeCu at any time.

Brief Introduction of Iron Copper FeCu Powder:

Product Name: FeCu powder, iron copper alloy powder

Hardness of FeCu powder: 102HRB

Tensile strength of FeCu powder: 1534Mpa


TDS of Iron Copper FeCu Powder:

Theoretical Densisty of hydrogen: 7.97g/cm3

Hydrogen Loss of FeCu powder: less than 0.65%

Apparent Density of FeCu powder: 0.6-0.8g/cm3

Tap Densisty of FeCu powder: 0.9-1.1g.cm3

Particle size of FeCu powder: D50=10.0-18.3
 

Features of Iron Copper FeCu Powder:

Preparation Large surface area, high activity, low sintering temperature, high density, high hardness sintered (maximum 102HRB) good sintering stability, bending strength up to 1534 Mpa, good flowability.

How is Pre-alloyed Iron Copper FeCu Powder produced?
When the content of copper powder is 7.44 % by mass and the sintering temperature is higher than the melting point of copper, the compaction expands the maximum. When (Fe-3.44 mass %Cu) pre-alloyed iron powder is mixed with copper powder, the maximum expansion rate of the sample is lower than that of the former when the addition amount of copper powder is 4.00 mass %. However, the compaction made of (Fe-7.18 %Cu) iron alloy powder and copper powder only shrinks when the copper powder is added. The penetration of liquid copper into the interstitial space between solid grains was observed in all sintered billets. The expansion behavior of iron-copper compaction with the same copper powder content changes with the increase of copper content in the initial iron powder.
 
Applications of Pre-alloyed Iron Copper FeCu Powder:
Copper-iron intermediate alloy is a grain refinement agent for brass alloys and aluminum bronze. It can also be used to improve the mechanical properties of low alloy copper and corrosion resistance of copper-nickel alloys.
In FeCu alloy systems, the actual procedures for the obvious mutual diffusion between these two basic elements are very limited. This work focuses on high-energy ball milling techniques to produce FeCu materials and, in some cases, simultaneously deposit them on thin substrates to suit different applications. This deposition occurs within the same crucible range and is used to produce alloys except without the use of grinding balls. Milling time and speed are two parameters that control the thickness and microstructure of the deposition layer. This two-step process generally allows for many practical applications to improve the mechanical, optical, and thermal properties of the target material by mechanical modification of its surface.

Storage Condition of Iron Copper FeCu Powder:
The damp reunion will affect FeCu powder dispersion performance and using effects, therefore, Iron Copper FeCu Powder should be sealed in vacuum packing and stored in cool and dry room, Iron Copper FeCu Powder can not be exposure to air. In addition, the FeCu powder should be avoided under stress.

Packing & Shipping of Iron Copper FeCu Powder:
We have many different kinds of packing which depends on the Iron Copper FeCu Powder quantity.
Iron Copper FeCu Powder packing:vacuum packing, 100g, 500g or 1kg/bag, 25kg/barrel, or as your request.
Iron Copper FeCu Powder shipping: could be shipped out by sea, by air, by express, as soon as possible once payment receipt.

Iron Copper Alloy Powder Properties

Other NamesFeCu, CuFe, Fe:Cu, Iron Copper, Fe-Cu Powder
CAS No.N/A
Compound FormulaFeCu
Molecular WeightN/A
AppearanceGray to Black Powder
Melting PointN/A
Boiling PointN/A
Density8.9 g/cm3
Solubility in H2ON/A
Monoisotopic Mass118.865 g/mol
  
  

Iron Copper Alloy Powder Health & Safety Information

Signal WordN/A
Hazard StatementsN/A
Hazard CodesN/A
Risk CodesN/A
Safety StatementsN/A
Transport InformationN/A
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Metal Alloy

Metal Alloy Fine Surface 19.15g/cm3 Tungsten Targets

About Metal Alloy Fine Surface 19.15g/cm3 Tungsten Targets:

Chemical composition:

Metal Alloy Fine Surface 19.15g/cm3 Tungsten Targets Properties

Other NamesTungsten Target
CAS No.N/A
Compound FormulaW
Molecular WeightN/A
AppearanceN/A
Melting PointN/A
Solubility in waterN/A
Density>=19.15g/cm3
Purity>=99.95%
Sizecustomized
Boling pointN/A
Specific HeatN/A
Thermal ConductivityN/A
Thermal ExpansionN/A
Young's ModulusN/A
Exact MassN/A
Monoisotopic MassN/A
  
  

Metal Alloy Fine Surface 19.15g/cm3 Tungsten Targets Health & Safety Information

Safety WarningN/A
Hazard StatementsN/A
Flashing pointN/A
Hazard CodesN/A
Risk CodesN/A
Safety StatementsN/A
RTECS NumberN/A
Transport InformationN/A
WGK GermanyN/A
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Metal Alloy

Metal Alloy 99.95% Purity Molybdenum Wires

About Metal Alloy 99.95% High Purity Molybdenum Wire:

Properties:

high tensile strength, high surface finish, good electrical conductivity, good stability, high cutting precision, small elongation.

Applications:

used as wire electrode of wire electrical discharge machining, for cutting machining parts, used for wire core, support, lead wire, heating element, used for high temperature coating, in order to improve the automobile and other mechanical wear resistance of easy worn parts.

Payment & Transportation:

Metal Alloy  99.95% Purity Molybdenum Wires Properties

Other NamesMolybdenum Wire
CAS No.N/A
Compound FormulaMo
Molecular WeightN/A
Appearancewire
Melting PointN/A
Solubility in waterN/A
Density>=10.2g/cm3
Purity>=99.95%
Sizecustomized
Boling pointN/A
Specific HeatN/A
Thermal ConductivityN/A
Thermal ExpansionN/A
Young's ModulusN/A
Exact MassN/A
Monoisotopic MassN/A
  
  

Metal Alloy  99.95% Purity Molybdenum Wires Health & Safety Information

Safety WarningN/A
Hazard StatementsN/A
Flashing pointN/A
Hazard CodesN/A
Risk CodesN/A
Safety StatementsN/A
RTECS NumberN/A
Transport InformationN/A
WGK GermanyN/A
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Metal Alloy

Pre-alloyed Iron Copper FeCu Powder

About Pre-alloyed Iron Copper FeCu Powder:
Many of the metals in the application are combinations of several different types of materials. This reason is very simple. Many pure metals have the unique properties we need in some types of applications. As in the case of copper, the metal provides excellent corrosion resistance in a brine environment. It also has large electrical and thermal conductivity because it is usually used for electronics and cables. The characteristics of other copper include magnetic fluctuations, ductility, and softness.
However, the pure metal itself can have negative characteristics of disappearance, which will destroy the application. This metal is weaker in the case of copper. Although working hardening techniques can be used to enhance, another method makes it more powerful to add other metals, such as iron.
Like copper, iron also has ductility and ductility. It also has good conductivity and tensile strength because it can be stretched and fractured. However, iron has corrosive because it is oxidized in the presence of water and oxygen.
Sometimes, the iron alloy is added to the iron will produce a positive effect. One of the main benefits to add iron to the copper alloy is that the tensile strength and corrosion resistance are improved without affecting the original conductivity of the copper alloy. Orachemicals is a trusted global Pre-alloyed Iron Copper FeCu Powder supplier. Feel free to send an inquiry about the latest price of Iron Copper alloy FeCu Powder at any time.

Product Name: FeCu powder, iron copper alloy powder

Hardness of FeCu powder: 102HRB

Tensile strength of FeCu powder: 1534Mpa

TDS of FeCu powder:
Theoretical Densisty of hydrogen: 7.97g/cm3

Hydrogen Loss of FeCu powder: less than 0.65%

Apparent Density of FeCu powder: 0.6-0.8g/cm3

Tap Densisty of FeCu powder: 0.9-1.1g.cm3

Particle size of FeCu powder: D50=10.0-18.3

Features of Iron Copper FeCu Powder: 
Preparation Large surface area, high activity, low sintering temperature, high density, high hardness sintered (maximum 102HRB) good sintering stability, bending strength up to 1534 Mpa, good flowability.

How is Pre-alloyed Iron Copper FeCu Powder Produced?
Fe-Cu pre-alloyed powders were prepared by water atomization using pure iron and high purity copper as the main raw materials. Good batch stability, good formability, concentrated and stable particle size distribution, low oxygen content, small fluctuation range. Products in the application of proportion according to the needs of the deployment, simplified formula design, promote the stability of the process, improve the comprehensive cost performance of products.
 
Applications of Pre-alloyed Iron Copper FeCu Powder:
Iron Copper FeCu Powder is mainly used as the base powder of various diamond tools to replace the mixed powder of elemental metal and improve the stability of the products.

Storage Condition of Iron Copper FeCu Powder:
The damp reunion will affect FeCu powder dispersion performance and using effects, therefore, Iron Copper FeCu Powder should be sealed in vacuum packing and stored in a cool and dry room, Iron Copper FeCu Powder can not be exposure to air. In addition, the FeCu powder should be avoided under stress.

Packing & Shipping of Iron Copper FeCu Powder:
We have many different kinds of packing which depend on the Iron Copper FeCu Powder quantity.
Iron Copper FeCu Powder packing:vacuum packing, 100g, 500g or 1kg/bag, 25kg/barrel, or as your request.
Iron Copper FeCu Powder shipping: could be shipped out by sea, by air, by express, as soon as possible once payment receipt.

Iron Copper Alloy Powder Properties

Other NamesFeCu, CuFe, Fe:Cu, Iron Copper, Fe-Cu Powder
CAS No.N/A
Compound FormulaFeCu
Molecular WeightN/A
AppearanceGray to Black Powder
Melting PointN/A
Boiling PointN/A
Density8.9 g/cm3
Solubility in H2ON/A
Monoisotopic Mass118.865 g/mol
  
  

Iron Copper Alloy Powder Health & Safety Information

Signal WordN/A
Hazard StatementsN/A
Hazard CodesN/A
Risk CodesN/A
Safety StatementsN/A
Transport InformationN/A
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Metal Alloy

Metal Alloy High Temperature Inconel718 Alloy Rod

About Metal Alloy High Temperature Inconel718 Alloy Rod:

Chemical composition: 
Ni (50 ~ 55)
Cr (17 ~ 21)
Fe (residual)
Mo (2.8 ~ 3.3)
Nb (4.75 ~ 5.50)
Co (1.0)
C (0.08)
Mn (0.35)
Si (0.35)
S (0.015)
Cu (0.30)
Al (0.20 ~ 0.80)
Ti (0.65 ~ 1.15)  

Technical standard: GB/T14992,GB/T14993

Properties: good comprehensive properties in the temperature range of -253 ~ 700℃, the yield strength below 650℃ ranks first in the deformation superalloy, and has good fatigue resistance, radiation resistance, oxidation resistance, corrosion resistance, and good machining and welding performance.

Applications: Inconel718 Alloy Rod can manufacture various complex shaped parts, and is widely used in aerospace, nuclear energy, petroleum industry and extrusion die in the above temperature range.  

Payment & Transportation:

Metal Alloy High Temperature Inconel718 Alloy Rod Properties

Other NamesNr-Cr alloy rod/bar
CAS No.N/A
Compound FormulaN/A
Molecular WeightN/A
Appearancerod, bar
Melting PointN/A
Solubility in waterN/A
Density8.2g/cm3
PurityN/A
Sizecustomized
Boling pointN/A
Specific HeatN/A
Thermal ConductivityN/A
Thermal ExpansionN/A
Young's ModulusN/A
Exact MassN/A
Monoisotopic MassN/A
  
  

Metal Alloy High Temperature Inconel718 Alloy Rod Health & Safety Information

Safety WarningN/A
Hazard StatementsN/A
Flashing pointN/A
Hazard CodesN/A
Risk CodesN/A
Safety StatementsN/A
RTECS NumberN/A
Transport InformationN/A
WGK GermanyN/A
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Metal Alloy

Metal Alloy High Purity Tungsten Wires High Temperature Heater Wire

About Metal Alloy High Purity Tungsten Wires High Temperature Heater Wire:

Properties:

high melting point, high-density, high temperature oxidation resistance, long service life, resistance to corrosion.

Applications:

mainly used for making heating wires, twisted wires for coating films under vacuum, also used as electrical light sources parts, also produced as components for manufacturing of guns, artillery, rockets, satellites, aircrafts and ships.


Following is the normal tungsten wire dimension form. For any special needs, please feel free to contact us.

Metal Alloy High Purity Tungsten Wires High Temperature Heater Wire Properties

Other NamesTungsten Wire
CAS No.N/A
Compound FormulaW
Molecular WeightN/A
Appearancewire
Melting PointN/A
Solubility in waterN/A
Density>=19.2g/cm3
Purity>=99.95%
Sizecustomized
Boling pointN/A
Specific HeatN/A
Thermal ConductivityN/A
Thermal ExpansionN/A
Young's ModulusN/A
Exact MassN/A
Monoisotopic MassN/A
  
  

Metal Alloy High Purity Tungsten Wires High Temperature Heater Wire Health & Safety Information

Safety WarningN/A
Hazard StatementsN/A
Flashing pointN/A
Hazard CodesN/A
Risk CodesN/A
Safety StatementsN/A
RTECS NumberN/A
Transport InformationN/A
WGK GermanyN/A
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Metal Alloy

Calcium Nitride Ca3N2 Powder CAS 12013-82-0

About Calcium Nitride Ca3N2 powder
In most cases, calcium nitride is usually available in large volumes. Orachemicals provides a wide range of products for hydrogen storage research, advanced fuel cells, and battery applications. Hydrogen is easily produced from renewable energy sources and is the most abundant element in the universe. Hydrogen comes from many sources, such as solid fuels, water, and renewable materials. Hydrogen is non-polluting and will form harmless water during use. Challenges related to the use of hydrogen as an energy source include the development of safe, compact, reliable, and cost-effective hydrogen storage and transmission technology. Currently, hydrogen can be stored in three forms: compressed hydrogen, liquid hydrogen, and chemical storage. High purity, submicron and Nanopowder forms can be considered. Calcium nitride is the main raw material for high-end phosphors. This phosphor is more stable, has better performance, and has better effects at high temperature and high humidity. Last but not least, calcium nitride can also be used as a chemical treatment agent, which is the key to determining the performance of water-based mud. Feel free to send an inquiry to get the latest price if you would like to buy Calcium nitride in bulk.
How is Calcium Nitride Produced?
When calcium burns in the air, it forms Ca3N2 with the oxide CaO. The distilled fibrous metallic calcium is heated to 450°C in a purified nitrogen stream, and then the metallic calcium is nitrided into calcium nitride after 3-4 hours.
Depending on the preparation temperature, the obtained calcium nitride is black at 350°C, milky white at 350 to 1150°C, or golden yellow at 1150°C or higher. It is easy to identify the calcium nitride formed because it can react with moisture or water and produce calcium hydroxide and ammonia.
Applications of Calcium Nitride
Ca3N2 can be used for obtaining reactive nitride ions, Calcium hydride (a desiccant) can be produced by heating calcium nitride with hydrogen at temperatures above 350 °C.
Product Performance of Calcium Nitride Ca3N2 powder:
Calcium Nitride Ca3N2 powder possesses the characteristics of high purity and uniform particle size distribution. 
Calcium nitride hydrolyzes to give calcium hydroxide and release ammonia, it dissolves in dilute acids and decomposes in alcohol.
Technical Parameter of Calcium Nitride Ca3N2 powder:

Product NameMFPurityParticle SizeMelting PointDensityColor
calcium nitrideCa3N299%5-10um1195℃2.67g/cm3red-brown

Chemical Composition of Calcium Nitride Ca3N2 powder:

Ca3N2NCaSiOCFe
99%13%balance0.05%0.3%0.05%0.2%


Application of Calcium Nitride Ca3N2 powder:
Calcium nitride Ca3N2powder is the main raw materials of chemical reagents and high-end fluorescent powder.

Packing & Shipping of Calcium Nitride Ca3N2 powder :
We have many different kinds of packing which depend on the calcium nitride Ca3N2 powder quantity.
Calcium nitride Ca3N2 powder packing: vacuum packing, 100g, 500g or 1kg/bag, 25kg/barrel, or as your request.
Calcium nitride Ca3N2 powder shipping: could be shipped out by sea, by air, by express as soon as possible once payment receipt.

 

Calcium Nitride Properties

Other Namestricalcium nitride, Ca3N2 powder
CAS No.12013-82-0
Compound FormulaCa3N2
Molecular Weight148.25
AppearanceBrown Powder
Melting PointN/A
Boiling PointN/A
Density2.63 g/cm3
Solubility in H2ON/A
Exact Mass147.894
  
  

Calcium Nitride Health & Safety Information

Signal WordDanger
Hazard StatementsH260-H314-H318
Hazard CodesF, C
Risk Codes11-29-34
Safety Statements16-22-26-36/37/39-45
Transport InformationUN 3208 4.3/PG I
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Metal Alloy

Metal Alloy High Purity Titanium Sputtering Target

About Metal Alloy High Purity Titanium Sputtering Target:

Standard:
ASTM B265, ASME SB265, ASTM F67, ASTM F136, AMS 4902, AMS 4911

Properties:
Titanium sputtering target is made of titanium metal, which is recognized for its high strength-to-weight ratio. It is a strong metal with low density that is quite ductile (especially in an oxygen-free environment), lustrous, and metallic-white in color. The relatively high melting point (more than 1,650 °C or 3,000 °F) makes it useful as a refractory metal. It is paramagnetic and has fairly low electrical and thermal conductivity.

Application:
mainly used for integrated circuit, DRAMS and flat panel display application.

Payment & Transportation:

Metal Alloy High Purity Titanium Sputtering Target Properties

Other NamesTitanium sputtering target
CAS No.N/A
Compound FormulaTi
Molecular WeightN/A
AppearanceN/A
Melting PointN/A
Solubility in waterN/A
DensityN/A
Purity99.6%
Sizecustomized
Boling pointN/A
Specific HeatN/A
Thermal ConductivityN/A
Thermal ExpansionN/A
Young's ModulusN/A
Exact MassN/A
Monoisotopic MassN/A
  
  

Metal Alloy High Purity Titanium Sputtering Target Health & Safety Information

Safety WarningN/A
Hazard StatementsN/A
Flashing pointN/A
Hazard CodesN/A
Risk CodesN/A
Safety StatementsN/A
RTECS NumberN/A
Transport InformationN/A
WGK GermanyN/A
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Metal Alloy

Silicon Aluminum Alloy Si-Al Powder

About Silicon Aluminum Alloy Si-Al Powder:
High-silicon aluminum alloy powder is a binary alloy composed of silicon and aluminum and is metal-based thermal management material. The high-silicon aluminum alloy material can maintain the excellent performance of silicon and aluminum, and the content of silicon and aluminum is quite rich. The preparation technology of silicon powder is mature and the cost is low. At the same time, this material does not pollute the environment and is harmless to the human body. Why is Silicon added to Aluminium?
When it is added to aluminum, the silicon makes the metal alloy more fluid without breaking the metal down at high temperatures. The silicon actually lowers the aluminum's melting point. The aluminum will not experience hot tearing as there is no brittleness.
The density of high-silicon aluminum alloy is between 2.4~2.7 g/cm³, and the coefficient of thermal expansion (CTE) is between 7-20ppm/℃. Increasing the silicon content can significantly reduce the density and thermal expansion coefficient of the alloy material. At the same time, the high-silicon aluminum alloy also has good thermal conductivity, high specific strength and stiffness, good plating performance with gold, silver, copper, nickel, weldable with the substrate, easy precision machining and other superior performance, is an Electronic packaging material with broad application prospects, especially in high-tech fields such as aerospace, space technology, and portable electronic devices. Orachemicals is a trusted global Silicon Aluminum Alloy Si-Al Powder supplier. Feel free to send an inquiry about the latest price of Silicon Aluminum Alloy at any time.

How is Silicon Aluminum Alloy Si-Al Powder Produced?
Preparation method of silicon and aluminum alloy:
(1) no pressure infiltration method
In the role of carbon steel permeability aid in the air, make the aluminum alloy melt into the silicon particle prefabricated parts, so as to prepare a composite material method;
(2) pressure infiltration method
By applying an external force, liquid aluminum metal penetrates into the preform of silicon particles to promote the penetration, wetting and recombination of silicon particles and liquid aluminum metal. The usual steps are to prepare the prefabricated silicon particle reinforcements and then cast the permeable composites.
(3) vacuum hot pressing method
A sintering process in which pressure forming and pressure sintering is carried out simultaneously under vacuum conditions;
(4) powder metallurgy method
A method of making a certain proportion of aluminum powder, silicon powder and binder by dry pressing, injection and other methods to make powder mixing molding, and sintering in a protective atmosphere, so as to obtain a dense material;
(5) rapid solidification method
Also known as rapid solidification, the solidification degree and solidification speed can be increased by increasing the solidification cooling rate, so as to achieve the purpose of refining the microstructure of the alloy.

Application of Silicon Aluminum Alloy Si-Al Powder:
1) High-power integrated circuit packaging: high-silicon aluminum alloy provides effective heat dissipation;
2) Carrier: It can be used as a local heat sink to make the components more closely arranged;
3) Optical frame: high-silicon aluminum alloy provides low thermal expansion coefficient, high rigidity and machinability;
4) Heat sink parts: high silicon aluminum alloy provides effective heat dissipation and structural support.
Application of Silicon Aluminum Alloy Si-Al Powder in auto parts:
High-silicon aluminum alloy material (with a silicon content of 20%-35%) has excellent tribological properties and can be used as an advanced lightweight wear-resistant material in various transportation vehicles and various types of power machinery, machine tools, special fasteners And tools have been widely used.
High-silicon aluminum alloy has a series of advantages such as small specific weight, lightweight, good thermal conductivity, low thermal expansion coefficient, volume stability, good wear resistance, good corrosion resistance, etc., and is widely used as cylinder sleeves, pistons, rotors of automobile engines, Brake discs and other materials.

Storage Condition of Silicon Aluminum Alloy Si-Al Powder:
The damp reunion will affect Si-Al powder dispersion performance and using effects, therefore, silicon aluminum alloy powder should be sealed in vacuum packing and stored in cool and dry room, the silicon aluminum alloy can not be exposure to air. In addition, the silicon aluminum alloy powder should be avoided under stress.

Packing & Shipping of Silicon Aluminum Alloy Si-Al Powder:
We have many different kinds of packing which depend on the silicon aluminum alloy Si-Al powder quantity.
Silicon aluminum alloy Si-Al powder packing: vacuum packing, 100g, 500g or 1kg/bag, 25kg/barrel, or as your request.
Silicon aluminum alloy Si-Al powder shipping: could be shipped out by sea, by air, by express as soon as possible once payment receipt.

 

Silicon Alumium Alloy Powder Properties

Other NamesAlSi, SiAl, Si:Al, silicon aluminum, Si-Al Powder
CAS No.11145-27-0
Compound FormulaSi-Al
Molecular WeightN/A
AppearanceGray to Black Powder
Melting Point600-760℃
Boiling PointN/A
Density2.7 g/cm3
Solubility in H2OInsoluble
Monoisotopic Mass54.958 g/mol
  
  

Silicon Alumium Alloy Powder Health & Safety Information

Signal WordN/A
Hazard StatementsN/A
Hazard CodesN/A
Risk CodesN/A
Safety StatementsN/A
Transport InformationNONH for all modes of transport
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