• SiC Crucibles For Melting Aluminium,Copper, Brass with High Heat  Resistance System 1
  • SiC Crucibles For Melting Aluminium,Copper, Brass with High Heat  Resistance System 2
  • SiC Crucibles For Melting Aluminium,Copper, Brass with High Heat  Resistance System 3
  • SiC Crucibles For Melting Aluminium,Copper, Brass with High Heat  Resistance System 4
  • SiC Crucibles For Melting Aluminium,Copper, Brass with High Heat  Resistance System 5
  • SiC Crucibles For Melting Aluminium,Copper, Brass with High Heat  Resistance System 6
SiC Crucibles For Melting Aluminium,Copper, Brass with High Heat  Resistance

SiC Crucibles For Melting Aluminium,Copper, Brass with High Heat Resistance

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Loading Port:
Shanghai
Payment Terms:
TT OR LC
Min Order Qty:
1 pc
Supply Capability:
1000 pc/month

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Quick Details for SiC Crucibles For Melting Aluminium,Copper, Brass with High Heat  Resistance

Type:

High Strength, graphite crucible crucible

Application:

melting metal

Height:

as your requirements

Composition:

High Pure

Top Diameter:

10-600mm

Bottom Diameter:

10-1000mm

Place of Origin:

 China (Mainland)

Brand Name:


Model Number:


Color:

Black grey

Si3N4%:

5min

Fe2O3%:

0.7max

C%:

30-45

Apparent porosity:

30max

Refractoriness:

1680

Bulk Density:

1.71min

Using life:

>5000 hours

MAX temperature:

1600c

Packaging & Delivery

Packaging Details:Seaworty packing or as per customer's detail requirement of graphite crucible.
Delivery Detail:within 20-30 days after confirm order of graphite cru

SiC Crucibles For Melting Aluminium,Copper, Brass with High Heat  Resistance                       

 

Product Description

 

Specifications for Graphite Silicon Carbide Crucible For Aluminum Melting :

1.Long working lifetime: its working lifetime is increased 3-5 times over normal clay-crucible due to the compact body formed under high pressure.

2.High thermal conductivity: high-density body and low apparent porosity greatly improve its heat conductivity.

3.New-style materials: new heat conduction material ensures faster heat conductivity and pollution-free product, reduces adherent slag.

4.Resistance to corrosion:better anti-corrosion than normal clay-crucible.

5.Resistance to oxidation: advanced process dramatically improves its oxidation resistance, which ensures persistent heat conductivity and long working lifetime.

6.High-strength: high-density body and logical structure make the product better compression property.

7.Eco-friendly: energy-efficient and pollution-free, not only ensure metal product purity, but also ensure sustainable development on environment.

8.Multi-function: Can be used in induction graphite crucible furnace

SiC Crucibles For Melting Aluminium,Copper, Brass with High Heat  Resistance

SiC Crucibles For Melting Aluminium,Copper, Brass with High Heat  Resistance


 

Features of SiC 95%  silicon carbide sic crucible               

1. resistance to deformation at high temperature,

2. thermal shock resistance, wear resistance, corrosion resistance.

3. anti-oxidation, anti- erosion.

 

Usage of SiC 95%  silicon carbide sic crucible                             

electricity and steel slag trench,

coal chemical and  mining  transport pipeline.

Packaging & Shipping

 

Package: Wooden case and wooden pallet or pack as customer's requirement of graphite crucible.

Delivery time: depend on distance,  usually 20 days to 50days after deposit of graphite crucible.


 We can supply the products according to customer's drawings, samples and performance requirement.


Other Products


SiC Crucibles For Melting Aluminium,Copper, Brass with High Heat  Resistance

SiC Crucibles For Melting Aluminium,Copper, Brass with High Heat  Resistance


Q:What material of graphite is used in arc furnace production?
First of all, what is your electric furnace product, smelting steel using high-power, ultra high power graphite electrode?.
Q:What is the typical density of a graphite crucible?
Graphite crucibles generally have a density ranging from 1.7 to 1.8 g/cm3, which is comparatively low compared to other substances. This characteristic, along with its high melting point and exceptional thermal conductivity, renders graphite ideal for use in crucibles. The reduced density of graphite crucibles not only facilitates their handling but also lessens the overall weight, thereby enhancing convenience for a wide range of industrial procedures, including high-temperature metal melting and chemical reactions.
Q:How does the erosion resistance of graphite affect the performance of a crucible?
The erosion resistance of graphite directly impacts the performance of a crucible. Graphite's high erosion resistance allows it to withstand the harsh conditions of high temperatures and corrosive substances without significant damage. This durability ensures that the crucible maintains its integrity, preventing contamination or leakage of the molten material being stored or processed. Overall, the erosion resistance of graphite is crucial for ensuring the reliability and longevity of a crucible.
Q:Where is the difference between the silicon carbide crucible and the graphite crucible?
Graphite crucible special tips:1. Be careful not to let the mechanical outside hit, do not belong or strike from the top.2. Should not be exposed to water or stored in a dry place.3. Built in melt dry, without contact with water.4. In use, flames that are not directly in the crucible (jet to the bottom of the crucible) will have a marked black mark at the bottom of the crucible if it is sprayed.5. After the aluminum is stopped, the remaining copper material is tried without leaving residue in the crucible.6. Use the proper amount of oxide (slag, etc) to avoid erosion of the crucible. Excessive use may cause erosion and damage to the crucible.7. When placed in a crucible, there is no need to use mechanical power to have a significant impact.
Q:How to extract gold from activated carbon filter?
High temperature roasting filter core with graphite crucible and acetylene burner.
Q:Can a graphite crucible be used for non-ferrous metals?
Yes, a graphite crucible can be used for non-ferrous metals. Graphite crucibles are commonly used in foundries and laboratories for melting and casting non-ferrous metals such as gold, silver, copper, aluminum, and zinc. Graphite is an excellent material for high-temperature applications due to its high thermal conductivity and high melting point. It can withstand the intense heat required to melt non-ferrous metals without melting or reacting chemically with the molten metal. Additionally, graphite crucibles have good resistance to thermal shock and are relatively easy to handle and clean. Therefore, they are a preferred choice for melting non-ferrous metals in various industries.
Q:Can graphite crucibles be used for metal powder sintering?
Yes, graphite crucibles can be used for metal powder sintering. Graphite crucibles are often preferred for sintering because they have excellent thermal conductivity and can withstand high temperatures. Additionally, graphite crucibles do not react with most metals, making them suitable for sintering various types of metal powders.
Q:Can graphite crucibles be used for semiconductor doping?
No, graphite crucibles cannot be used for semiconductor doping because graphite can contaminate the semiconductor material, affecting its electronic properties.
Q:Can graphite crucibles be used for laboratory analysis?
Laboratory analysis can utilize graphite crucibles. Laboratories frequently employ graphite due to its resistance to high temperatures and lack of chemical reactivity. Its advantageous properties make it particularly useful for carrying out processes that involve extreme heat, such as metal melting, as it can endure temperatures of up to 3000 degrees Celsius. Moreover, graphite crucibles possess exceptional thermal conductivity, ensuring a uniform distribution of heat during experiments. However, it is crucial to acknowledge that graphite crucibles may react with specific chemicals or elements under particular conditions, necessitating careful consideration of compatibility with the substances being analyzed. Additionally, the selection of crucible material should be based on the unique requirements of the analysis, as certain situations may demand alternative materials like porcelain, quartz, or platinum.
Q:Electromagnetic induction heating device into the copper coil heater, to use more power consumption to reach the melting temperature of iron?
Ten on the theory but can't stand hot kilowatts, ah

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