What is the impact of ultra-high power graphite electrodes on the development of new energy?
Ultra-high power graphite electrode is a new type of electrode material with high conductivity and thermal conductivity, suitable for high-power electrochemical applications. With the rapid development of new energy, ultra-high power graphite electrodes are increasingly widely used in the field of new energy, which has a profound impact on the development of new energy.
First of all, the application of ultra-high power graphite electrodes has promoted the innovation of new energy technology. In the field of new energy, electrochemical reaction is an important way of energy conversion, and electrodes are the key components of electrochemical reactions. Traditional electrode materials have problems such as insufficient conductivity and heat accumulation when used at high power, which limits the performance of new energy equipment. Ultra-high power graphite electrodes have high conductivity and thermal conductivity, which can effectively improve the efficiency and performance of energy equipment. By applying ultra-high power graphite electrodes to new energy equipment, high efficiency and high power output of energy conversion can be achieved, promoting the innovation and development of new energy technology.
Secondly, the application of ultra-high power graphite electrodes has promoted the rapid development of the new energy industry. The new energy industry is one of the important areas of global development in the 21st century, including solar energy, wind energy, electric vehicles and other fields. As a key component of new energy equipment, ultra-high power graphite electrodes can improve the power output and service life of equipment, thereby promoting the development of the new energy industry. By improving energy conversion efficiency and reducing energy consumption, ultra-high power graphite electrodes help reduce the cost of new energy equipment, improve the competitiveness of the industry, and promote the rapid development of the new energy industry.
In addition, ultra-high power graphite electrodes can also effectively reduce the environmental pollution of new energy equipment. With the increasing severity of global environmental problems, new energy is widely used to replace traditional energy to reduce pollution to the environment. Ultra-high power graphite electrodes have high electrical conductivity and thermal conductivity, which can improve the energy conversion efficiency of energy equipment, reduce energy consumption and emissions, and thus reduce environmental pollution. By promoting efficient energy saving and clean production of new energy equipment, ultra-high power graphite electrodes help improve environmental quality and promote sustainable economic development.
In general, ultra-high power graphite electrodes have a positive impact on the development of new energy. Its high electrical conductivity and thermal conductivity help improve the efficiency and performance of energy equipment and promote the innovation of new energy technologies; at the same time, it can promote the development of the new energy industry, reduce equipment costs, and improve industrial competitiveness; in addition, it also helps to reduce environmental pollution of new energy equipment, improve environmental quality, and achieve sustainable economic development. Therefore, ultra-high power graphite electrodes have important application prospects and driving role in the field of new energy, and are expected to become an important driving force for the development of new energy technologies in the future.
Actual diameters | Actual lengths | ||||||
Mm | Mm | MAX | MIN | Rough spot | Length | Tolerance | Shot Ruler size |
200 | 8 | 204 | 201 | 198 | 1600 | ±100 | -275 |
250 | 10 | 256 | 252 | 248 | 1600 1800 |
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300 | 12 | 307 | 303 | 299 | |||
350 | 14 | 357 | 353 | 347 | |||
400 | 16 | 409 | 404 | 400 | 1600 1800 2000 |
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450 | 18 | 460 | 455 | 451 | |||
500 | 20 | 511 | 506 | 502 | |||
600 | 24 | 613 | 607 | 604 | |||
780 | 31.2 | 782 | 776 | 774 | 2000 2200 2400 |
±100 | -400 |
800 | 32 | 802 | 796 | 794 | |||
870 | 34.8 | 872 | 866 | 862 | |||
900 | 36 | 902 | 896 | 892 | |||
920 | 36.8 | 922 | 916 | 912 | |||
960 | 38.4 | 962 | 956 | 952 | |||
1020 | 40.8 | 1022 | 1016 | 1012 | 2200 2600 2800 |
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1060 | 42.4 | 1062 | 1056 | 1052 | |||
1100 | 44 | 1102 | 1092 | 1092 | |||
1146 | 45.8 | 1148 | 1140 | 1138 | |||
1197 | 47.9 | 1199 | 1191 | 1189 | |||
1250 | 50 | 1252 | 1244 | 1242 | |||
1272 | 50.9 | 1274 | 1266 | 1264 | |||
1305 | 54.4 | 1307 | 1299 | 1297 | |||
1321 | 52.8 | 1323 | 1315 | 1313 | |||
1400 | 56 | 1402 | 1394 | 1392 |
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