About Graphite Rods
With our immense domain expertise, we have been affianced to offer a quality-assured range of Graphite Rods that is cherished for their extreme rigidity. The offered rods are suitable for both roughing and finishing EDM applications. These rods are manufactured by our adroit professionals using quality-assured graphite and modern manufacturing machines. Further, the provided rods are also stringently tested on set quality parameters to ensure their flawlessness. Moreover, we are offering these Graphite Rods in various lengths and diameters to meet the diverse demands of clients.
Features:
- Robust construction
- Durable finish standards
- Dimensional stability
- High tensile strength
- High strength
- Corrosion resistance
- High mechanical strength
Product details
|
Compressive
|
65Mpa
|
|
Material
|
Graphite
|
|
Shape
|
Round
|
|
Length
|
12-18 inch
|
|
Diameter
|
30-50 mm
|
Exceptional High-Purity Graphite RodsOur graphite rods are crafted from high-purity carbon, typically greater than 99%, ensuring top-tier conductivity and mechanical strength. Designed for use at extreme temperatures up to 3000C in controlled atmospheres, they are ideal for a variety of industrial and laboratory processes where both precision and durability are paramount.
Versatile Solutions for Critical IndustriesAvailable in an array of diameters and lengths, these rods support myriad applications such as Electrical Discharge Machining (EDM), furnace components, electrolysis cells, and laboratory experiments. Their excellent thermal properties and low water absorption make them suitable for challenging environments where reliability is crucial.
FAQ's of Graphite Rods:
Q: How are these graphite rods typically used in industrial applications?
A: These graphite rods are widely employed in industrial sectors for applications like Electrical Discharge Machining (EDM), high-temperature furnaces, electrolysis, and laboratory research. Capitalizing on their superior thermal and electrical conductivity, they are often chosen for roles involving heat and electricity transfer or as structural components in inert or vacuum environments.
Q: What benefits do high-purity graphite rods offer over conventional materials?
A: High-purity graphite rods provide exceptional thermal and electrical conductivity, outstanding stability at temperatures up to 3000C (in non-oxidizing conditions), and excellent machinability. Their negligible water absorption and smooth or machined surface enhance durability, making them superior for precise industrial and scientific use.
Q: When is it recommended to use graphite rods with moderate oxidation resistance?
A: Since these rods offer moderate oxidation resistance, they should be utilized primarily in non-oxidizing (inert or vacuum) atmospheres, especially at high temperatures. This reduces the risk of oxidation and prolongs the rod's life during critical processes such as furnace operations or laboratory analysis.
Q: Where are graphite rods ideally applied in laboratory or industrial settings?
A: Graphite rods are best applied in environments requiring high temperature stability and conductivity, such as in EDM processes, furnaces, electrolysis setups, and scientific laboratories. Their robustness and precision make them a popular choice in settings where accuracy and reliability are essential.
Q: What is the process for shaping and finishing these graphite rods?
A: These rods can be supplied with either a smooth or machined finish based on client requirements. Machining is performed with precision tools to customize diameter and length (ranging from 2mm to 100mm and 100mm to 1500mm, respectively) to meet exact application needs, ensuring seamless integration into existing systems.
Q: How does the high compressive and flexural strength benefit users?
A: With compressive strengths of 60-160 MPa and flexural strengths between 25-60 MPa, these rods offer enhanced durability and load resistance. This makes them particularly advantageous in demanding industrial conditions where mechanical integrity and longevity are crucial.