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Isostatic Graphite Heating Elements

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period for delivery: Consignment Deadline Days
area: Shandong
Expiry date : Long Effective
last update: 2023-12-10 03:57
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Isostatic Graphite Heating Elements



 

 






The high purity of graphite used in the production of isostatic graphite heating elements allows for precise control over temperature and heating rates. This makes them ideal for use in a wide range of applications including scientific research, industrial processes, and automotive manufacturing.



 




With their high durability and resistance to extreme temperatures, isostatic graphite heating elements offer an efficient and reliable solution for heating applications. These heating elements are designed to withstand high temperatures, making them suitable for use in high-temperature environments such as furnaces and ovens.



 




Furthermore, isostatic graphite heating elements are highly stable and do not react with most chemicals or gases. This makes them an ideal choice for use in chemical applications, where they can provide precise and consistent heating without contaminating the materials being processed.



 








 



In addition, isostatic graphite heating elements are lightweight, making them easily portable and easy to install in various applications. They are also energy-efficient, as they can heat up quickly and require less energy to maintain the desired temperature.



 



In summary, isostatic graphite heating elements are a superior heating technology that offers high performance, durability, stability, and efficiency. With their numerous benefits, they are an ideal choice for anyone seeking a reliable and efficient heating solution.



 









Process Flow for Isostatic Graphite Material Forming



 




Isostatic graphite material forming is a widely used technology to produce graphite products with excellent mechanical strength, high-temperature resistance, and corrosion resistance. The process flow for isostatic graphite material forming involves several crucial steps, which are described below.

1. Raw material selection: The first step in the graphite material forming process is selecting the appropriate raw materials. High-quality natural graphite flakes or synthetic graphite particles are commonly used for this purpose.

2. Mixing: After the raw materials have been selected, they are mixed in a predetermined ratio with a binding agent. The binding agent may consist of phenolic resin, pitch, or other organic materials.

3. Forming: The mixed graphite material is then placed in a mold, and high-pressure is applied to the mold. The pressure can be generated using a hydraulic press, pneumatic press, or other devices. The pressure is maintained until the mixed material reaches the desired density and shape.

4. Curing: The formed graphite material is then cured in an oven at a specific temperature and time to allow the binding agent to harden and solidify. The curing process is essential to ensure the structural stability of the finished product.

5. Machining: After curing, the formed graphite material is machined to the desired shape and size. This step requires precision instruments and skilled technicians to achieve the required product specifications.

6. Quality control: Before the final product is approved for use, it undergoes several quality control checks. These checks ensure that the product is of sufficient strength, density, and other mechanical properties.

7. Final packaging: Once the product has passed the quality control checks, it is packed and shipped to the designated site.












 



In conclusion, isostatic graphite material forming is a critical process that requires careful attention to detail at every stage to ensure that the finished product is of high quality and meets customer requirements. The above-described process flow provides a guideline for manufacturers to create high-quality graphite products using this technology.



 











The characteristics of Jinpeng graphite heating original products



 




The graphite heating elements produced by Zibo Jinpeng Composite Material Technology Co.,Ltd are made of specially customized graphite materials, It specifically designed for the application field of vacuum high-temperature industrial furnaces that convert electrical energy into heat energy. Zibo Jinpeng graphite material have low thermal expansion coefficient, excellent oxidation resistance, and customized production.

Firstly, graphite has a high melting point and is able to withstand temperatures up to 3000°C, making it ideal for use in high-temperature environments. Secondly, graphite is a good conductor of heat and electricity, ensuring that heat is distributed evenly throughout the furnace. This helps to prevent hot spots and cold spots from forming, reducing the likelihood of damage to the furnace walls and other components.

In addition to their temperature control capabilities, graphite heating elements are also highly resistant to corrosion and chemical attack. This is due in part to their non-reactive nature, which makes them ideal for use in processes involving corrosive substances. Furthermore, graphite heating elements are highly durable and have a long service life, reducing the need for frequent replacement and downtime.










 



Overall, the unique characteristics and functions of graphite heating elements make them indispensable in high-temperature industrial furnaces. Their ability to withstand extreme temperatures, distribute heat evenly, provide precise temperature control, resist corrosion and chemical attack, and be highly durable and long-lasting make them a valuable asset in many industries.



 







 


RFQ





 







Q: Are you trading company or manufacturer ?




A: We are factory.





Q:  Is the graphite material of the heating element are self-produced?




A: Yes we are.





Q: Can you provide customized services and installation guidance?




A: Yes we are





Q: Can you provide MTC or COC ?




A: Yes we are.





 





 

http://www.jpcarbons.com/

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