High Purity AlN Ceramic Powder Injection Molding Components
Exposure to molten and other molten metalics will not cause it to corrode. It can resist the corrosion of moly steel.
About
AlN Ceramic Powder Injection Molding Components
:
Formulation chemical to make aluminum nitride
AIN.
Aluminum Nitride
The covalent bond compound is an atomic structure, which falls under the category of hexagonal and wurtzite. It has a diamond-like appearance. Many color options are available, including non-toxic and off-white.
AlN Aluminum nitride
Temperature stability in a room can be as high as 2200 As the temperature drops, its strength will drop. It's highly thermally conductive and resists heat. This crucible is capable of melting pure iron and aluminum. However, it can also be manufactured. This crucible can resist molten-metal corrosion. This crucible can be used for insulation. Aluminium nitride has great dielectric properties. Most likely, it will also be included in an electric system. Because of its dielectric characteristics, it is a valuable component in an electric system.
aluminum nitride coating
Protective layers can be placed on top of gallium arsenide to prevent Annealing. The reputation of the company around the world
AlN Ceramic Powder Injection Molding Components
Source
. Our team can help you with all of your inquiries regarding the current news.
Aluminum nitride
Prices
Anytime.
AlN Ceramic Microspheres Product performance AlN Aluminium Nitride AlN
AlN powder-molding components for ceramic powder offer excellent quality at an extremely low cost. These parts can be produced in large numbers and intricate shapes.
AlN Ceramic Powder injection Molding Components Features:
Extremely high thermal conductivity
High strength
Excellent accuracy
Superior insulation
Complex shapes can be customized
Plasma Resistance
Specification: AlN ceramic powder inject molding components
Properties
|
Tr-C210
|
Tr-C170
|
In grams/cm3.
|
3.33
|
3.32
|
Temperature conductivity W/m*K
|
210
|
170
|
Bending Strength (MPa)
|
300
|
410
|
Insulation (KV/mm)
|
27
|
31
|
Dielectric
|
8.9
|
8.8
|
CTE (11-6).
|
4.9
|
4.6
|
What is HTML6_ HTML7_ HTML8_ HTML9_ HTML4_ HTML5_ HTML6_ HTML7_ HTML8_ HTML9_ HTML4_ HTML5_ HTML6_ HTML7_ HTML6_ HTML7_ HTML8_ HTML9_ HTML4_ HTML5_ HTML5_ HTML5_ HTML3_ HTML5_ HTML5_ HTML3_ HTML5_ HTML5_ HTML5_ HTML3_ HTML5_ HTML3_ HTML6_ HTML7_ HTML6_ HTML7_ HTML7_ HTML6_ HTML7_ HTML6_ HTML7_ HTML7_ HTML4_ HTML7_ HTML5_ HTML6_ HTML5_ HTML3_ HTML5_ HTML6_ HTML6_ HTML7_ HTML5_ HTML3_ HTML6_ HTML5_ HTML6_ HTML4_ HTML5_ HTML6_ HTML7_ HTML3_ HTML5_ HTML5_ HTML4_ HTML6_ HTML3_ HTML5_ HTML3_ HTML5_ HTML5_ HTML5_ HTML5_ HTML6_ HTML7_ HTML5_ HTML6_ HTML5_ HTML6_ HTML6_ HTML7_ HTML5_ HTML3_ HTML3_ HTML6_ HTML3_ HTML3_ HTML5_ HTML3_ HTML3_ HTML6_ HTML5_ HTML5_ HTML5_ HTML3_ HTML6_ HTML3_ HTML3_
Al powder-nitride ceramics are possible by directly nutridding
You can produce Al powder by directly nitriding. This is the best way to produce AlN powder. You can also heat aluminum powder in nitrogen. To make aluminum nitride, aluminium powder reacts to nitrogen at 800-1200deg Celsius.
These benefits include the availability of raw materials, cost-effectiveness, and minimal side effects. However, there are downsides. The aluminum particles develop a Nitride layer on the surfaces of their surface in the early stages. Nitride prevents Nitrogen absorption. Lower yields result. Exothermic reactions are where aluminum reacts strongly with nitrogen. Because of this reaction, it is quick. AlN powder can self-sinter. Agglomeration results in smaller powder particles.
You can make aluminum nitride using several methods, such as Al2O3 Carbothermal Reduce, High-temperature Selfspreading Synthesis and high-energy ball milling.
Application Injection molding components
1. Aluminium Nitride boasts a high purity level and small particles. It's extremely active. This powder can be used to create high-temperature aluminium-nitride ceramics substrat.
2. Substrata With a high thermal conductivity and low expansion factor of Aluminium Nitride Clay substrate . This substrate is ideal for large-scale integrated circuits.
3. Aluminum Nitride can be more hard than Alumina. This ceramic material looks great. This is a very expensive ceramic material that should not be used in extremely worn areas.
4. The heat resistance (thermal shock resistance) and the melt erosion resistance ceramics are two of the key ingredients to making GaAs Crystals. You can use this optical property in infrared glass applications. The Aluminum Nickel Foil can be used in both high-frequency and large-scale integrated circuits as an excellent piezoelectric element.
5. It is possible to achieve the resistance of aluminum nitride to heat and corrosion. You can easily get rid of it with alkaline remedies. Humid air is responsible for the formation oxide layers. It can also be used to make casting materials or as a crucible. You can use it to melt silver, lead, or aluminum. AIN ceramics could be used in place of harmful berylliumoxide to produce electronics.
AlN Ceramic powder inject molding components Storage Conditions
Wet reunion can damage AlN ceramic powder injection molding parts. You can alter dispersion, as well as the effects that use has on them. The best way to protect AlN ceramic mould components is with vacuum bags. Avoid stress.
AlN Powder-Injection Molding Parts: Shipping & packaging
There are many packing options depending upon the number of AlN ceramic powdered–injection molding pieces.
AlN ceramic powder molding components packaging, and vacuum Packaging.
AlN ceramic powder injection mould components are available for delivery
Nanotechnology Co. Ltd. was established in 2012 as a reliable supplier of chemical products and a manufacturer. The company is known for providing Nanomaterials, such as Boride and graphite over a 12-year period. sulfide. 3D printing powders.
We offer high quality Aluminum ceramic Pulsed injection Moulding Parts. (brad@ihpa.net)
All N ceramic powder injection mold components properties
|
Additional Titles
|
Aluminium nitride
|
|
24304-00-5
|
Combination Formula
|
AlN
|
Motility
|
40.9882
|
Appearance
|
From white powder to pale powder
|
Melting Point
|
2200 degC
|
Boiling Point
|
2517 degC (dec.)
|
Density
|
2.9% to 3.3g/cm3.
|
Solubility
|
N/A
|
Electrical Resistance
|
10-12 10x 10x O.m
|
Poisson rate
|
0.21 bis 0.31
|
Heating
|
780 J/kg-K
|
Conductivity
|
80 to 200 W/mK
|
Thermal Expansion
|
4.2 to 5.4 um/mK
|
Young Modular
|
330 GPa
|
The exact
|
40.9846
|
Monoisotopic
|
40.9846
|
Safety & Safety Information
Comments
|
Danger
|
Hazard Statements
|
H314-H335
|
Hazard Codes
|
Xi
|
Risk Codes
|
36/37/38
|
Security statements
|
26-37/39
|
RTECS #
|
N/A
|
Transport Information
|
N/A
|
Germany
|
3
|
Inquiry us