• 2kg Graphite Crucible for Melting Aluminium, Copper, Brass with High Heat Resistance System 1
  • 2kg Graphite Crucible for Melting Aluminium, Copper, Brass with High Heat Resistance System 2
  • 2kg Graphite Crucible for Melting Aluminium, Copper, Brass with High Heat Resistance System 3
  • 2kg Graphite Crucible for Melting Aluminium, Copper, Brass with High Heat Resistance System 4
  • 2kg Graphite Crucible for Melting Aluminium, Copper, Brass with High Heat Resistance System 5
  • 2kg Graphite Crucible for Melting Aluminium, Copper, Brass with High Heat Resistance System 6
2kg Graphite Crucible for Melting Aluminium, Copper, Brass with High Heat Resistance

2kg Graphite Crucible 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: Can graphite crucibles be used for thermal analysis?
Yes, graphite crucibles can be used for thermal analysis. Graphite has excellent thermal conductivity and can withstand high temperatures, making it suitable for various thermal analysis techniques such as thermal gravimetric analysis (TGA) and differential scanning calorimetry (DSC). Its inert nature also allows for accurate measurement and analysis of thermal properties of the sample.
Q: Procedures for operating high temperature furnaces
A, the graphite crucible is placed on the platform of the conveying cart, and the position is determined by using the spacing bar.B, pull out the stop lever, switch the car to IN, and then operate the UP - FORWARD - BACK - DOWN, the crucible into the furnace, and determine the delivery vehicle will arrive at the initial position.C, Mount graphite cover plate, tighten the graphite bolt, close the door
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 melting pharmaceutical substances?
Yes, a graphite crucible can be used for melting pharmaceutical substances. Graphite crucibles are known for their high melting point, excellent thermal conductivity, and chemical inertness, which make them suitable for a wide range of applications, including melting pharmaceutical substances. They can withstand high temperatures needed for the melting process without reacting with the substances being melted, ensuring the purity and integrity of the pharmaceutical compounds. Additionally, graphite crucibles can efficiently transfer heat, allowing for uniform heating and melting of the pharmaceutical substances. However, it is essential to ensure that the graphite crucible is properly cleaned and free from any contaminants that could potentially affect the purity of the pharmaceutical substances being melted.
Q: How does a graphite crucible handle corrosive substances?
When dealing with corrosive substances, a graphite crucible proves highly resistant to corrosion. Graphite possesses remarkable chemical stability, rendering it an ideal material for the handling of such substances. Its distinct structure and bonding properties provide resistance against acids, alkalis, and other corrosive agents. Graphite boasts a high melting point, low coefficient of thermal expansion, and excellent thermal conductivity. These qualities enable it to endure extreme temperatures and rapid temperature fluctuations without experiencing cracking or deformation. As a result, graphite finds utility in diverse industries, including metallurgy, foundries, and laboratories, where encounters with corrosive substances are frequent. Moreover, graphite exhibits a non-wetting characteristic, signifying its lack of reaction with molten metals or other corrosive materials. This non-reactivity effectively prevents any contamination or chemical reactions between the crucible and the corrosive substances housed within it. Consequently, the integrity of the graphite crucible remains intact, ensuring the preservation of substance quality and purity. To summarize, the outstanding chemical stability, corrosion resistance, high melting point, thermal conductivity, and non-wetting property of a graphite crucible make it a superb choice for handling corrosive substances. Its ability to withstand harsh conditions while maintaining structural integrity establishes it as a dependable and enduring option in various applications involving corrosive substances.
Q: What is the main function of graphite?
As a conductive material: used for manufacturing the electrode, carbon nanotubes, carbon brush, and the positive electrode of the mercury rectifier in the electrical industry, graphite gasket, telephone parts, TV tube coating etc..
Q: How to judge the thermal stability of rubber oil?
2 sample 2.1 sampling for liquid or paste sample, after mixing can be sampled; for solid specimens, after grinding with cone four sampling method. 2.2 sample size, the amount of sample tested by the amount, the extent of dilution, Y axis range, enthalpy change size and heating rate and other factors to determine, generally 1 to 5mg, the maximum dose of not more than 50mg. If the sample has the potential to release large quantities of potential suddenly, the amount of sample should be appropriately reduced.
Q: Can magnesia crucible be melted into stainless steel?
Then the influence of phase transformation temperature and mechanical properties of the alloy. So in smelting, the crucible material, melting atmosphere and environment should be carefully considered, and strict control, to suppress all kinds of debris produced. I can't decide which one is good, just want to say a few kinds of melting non-ferrous alloy experiences the (in) in 0 according to ZL Aluminum Alloy casting, cast iron crucible;
Q: What are the recommended storage conditions for graphite crucibles?
To ensure optimal storage conditions for graphite crucibles, it is recommended to keep them in a cool, dry, and clean environment. It is important to store these crucibles in a space with controlled temperature, ensuring that it does not exceed 50 degrees Celsius (122 degrees Fahrenheit). It is crucial to avoid exposing them to extreme temperatures, as excessive heat may lead to oxidation or degradation of the graphite material. Moreover, it is essential to keep the crucibles away from any sources of moisture or humidity, as water can react with the graphite and compromise its structural integrity. To prevent contamination, it is advisable to store the graphite crucibles separately from other materials and make sure they are not in contact with any corrosive substances. Regularly cleaning and inspecting the crucibles before storing them can also aid in maintaining their quality and prolonging their lifespan.
Q: Does the graphite metal pad have any requirements on the sealing surface?
The graphite composite gasket can be processed into the following forms according to the needs of use: 1. basic graphite composite gasket, 2. package inner graphite composite gasket, 3. outer graphite composite gasket 4., inner and outer edge graphite composite gasket. The graphite composite gasket has the advantages of keeping the excellent performance of the original gasket, easy installation and disassembly, uneasy damage, and preventing the medium from eroding the gasket and improving the pressure resistance. Commonly used wrapping material is 304 or 316 stainless steel.

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