What are the advantages of ultra-high power graphite electrodes in market competition?
Ultra-high power graphite electrode is a new type of electrode material with high conductivity and thermal stability, suitable for high-power electrochemical applications. In market competition, ultra-high power graphite electricity has many advantages, such as stability, high efficiency, environmental protection, etc. This article will analyze the competitive advantages of ultra-high power graphite electrodes from these aspects.
Nominal Diameter | Actual Diameter | Nominal Length(mm) | ||
mm | Inch | Max(mm) | Min(mm) | |
75 | 3 | 78 | 73 | 1000 |
100 | 4 | 103 | 98 | 1200 |
150 | 6 | 154 | 149 | 1500-1800 |
200 | 8 | 205 | 200 | 1500-1800 |
225 | 9 | 230 | 225 | 1500-2100 |
250 | 10 | 256 | 251 | 1500-2100 |
300 | 12 | 307 | 302 | 1500-2100 |
350 | 14 | 357 | 352 | 1500-2400 |
400 | 16 | 409 | 403 | 1500-2400 |
450 | 18 | 460 | 454 | 1500-2400 |
500 | 20 | 511 | 505 | 1800-2700 |
550 | 22 | 562 | 556 | 1800-2700 |
600 | 24 | 613 | 607 | 2100-2700 |
650 | 26 | 663 | 657 | 2100-2700 |
700 | 28 | 714 | 708 | 2100-2700 |
750 | 30 | 765 | 759 | 2400-2700 |
800 | 32 | 816 | 810 | 2400-2700 |
First of all, ultra-high power graphite electricity has high stability. Due to the particularity of its graphite crystal structure, ultra-high power graphite has high antioxidant properties and thermal stability, can maintain good stability under high temperature and high pressure environment, and is not prone to problems such as thermal expansion or oxidation. This stability makes ultra-high power graphite electrodes perform well in high-power electrochemical applications and can work stably for a long time.
Secondly, ultra-high power graphite has high conductivity. Graphite is a good conductive material. Ultra-high power graphite electrodes are specially treated during the preparation process and have higher conductivity and conductivity. They can conduct current more effectively, thereby improving the efficiency and performance of the electrode. This improvement in conductivity can make ultra-high power graphite electrodes perform better in high-power electrochemical applications and are more suitable for application scenarios requiring higher power output.
In addition, ultra-high power graphite has high environmental protection. Graphite is a natural non-toxic and harmless material. Ultra-high power graphite electrodes do not need to add harmful chemicals during the preparation process, there is no secondary emission, and will not pollute the environment. Compared with traditional electrode materials, ultra-high power graphite electrodes are more environmentally friendly and sustainable, more in line with the requirements of modern society for environmental protection performance, and have better market competitiveness.
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