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2.Application; for lithium ion battery raw material
Carbon Black C65 For Lithium ion Battery Raw Material
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Internal method 26 |
2 |
160±20 |
160 |
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Internal method 1 |
ml/5g |
32.0±2.0 |
33.0 |
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JIS K1469-1984 |
ml/5g |
min 16.0 |
20.8 |
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Grit 45μm/325 mesh |
ASTM D1514 |
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max5.0 |
<2 |
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Grit 20μm |
ASTM D1514 |
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max25 |
<7 |
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ASTM D3037-89 |
m2/g |
62.0±5.0 |
61.2 |
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ASTM D1509 |
% |
max 0.3 |
0.1 |
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ASTM D1619 |
% |
max 0.030 |
0.023 |
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Internal method 2 |
% |
max 0.15 |
0.14 |
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ASTM D1506 |
% |
max 0.025 |
0.010 |
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Internal method 20 |
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max 7.0 |
1.5 |
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Internal method 20 |
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0.1 |
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Internal method 20 |
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<0.5 |
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ASTM D4527 |
% |
max 0.10 |
<0.10 |
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Specific Resistance 50kg/cm2 |
Internal method 7 |
Ohm-cm |
max 0.25 |
0.17 |
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Specific Resistance 50kg/cm2 |
Internal method 7 |
Ohm-cm |
max 0.15 |
0.12 |
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Internal method 27 |
% |
min 99.5 |
>99.5 |
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ASTMD1512 |
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8-11.0 |
9.3 |
Carbon black is a commonly used filler in the manufacturing of rubber and plastic products. It is available in different grades and types depending on its properties and applications. One such grade is the electrically conductive carbon black C65, which is extensively used for enhancing the electrical conductivity of various industrial products.
C65 carbon black exhibits good electrical conductivity due to the presence of high levels of graphitic carbon in its structure. It has a high surface area and low particle size distribution, which reduces the resistance between particles, thereby increasing the conductivity. It is also highly stable and resistant to degradation, making it an ideal choice for applications where long-term stability is required.


ISO 9001


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