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1 Products availableWe offer the best product range of Friction Materials.
GRADE | Carbon content min (%) | Oxidation resistance | Bulk Density (g/100cc) | Particle size distribution |
B-S-1 | 99.5 | 0.23-0.26 | -240# | |
B-4-1 | 98.5 | 52.32 | 0.31-0.33 | -200 +325# : 15% |
B-8-2 | 98.0 | 99.90 | 0.32-0.33 | -200# |
B-12-3 | 98.0 | 95.90 | 0.31-0.32 | +200# : Nil -200 +325# : 15% -325 Mesh: balance |
B-0-P | 97.0 | 75.70 | 0.36-0.39 | +80# : Nil -80+100# : 5% max. -100+200# : Balance -200# : 70 - 80% |
A-12-3 | 97.0 | 99.37 | 0.23-0.25 | -250# |
A-0-7 | 97.0 | 94.70 | 0.31-0.33 | -200# |
C-12-11 | 96.0 min. | 54.28 | 0.23-.025 | +240# : Nil |
C6-12-S | 93.0 | 9.84 | 0.62 | +20# : Nil -20 +50# : Balance -50 + 100# : 30-80% -100# : 10% max. |
D-0-4 | 90.0 | 71.28 | 0.23 | -325# : 97% min. |
A-0-5 | 87.0 and 97.5 | 27.54 | 0.31-0.33 | -200# |
S-12-3 | 98.0 | 84.20 | 0.25 | +240# : Nil |
Graphite Powder is used as additive in the manufacture of Catalysts. The Graphite Powder even in minor quantities provides the necessity lubrication between the active catalyst powders during the manufacturer of the catalyst pellets and extrusions. Graphites chemical inertness ensures that it does not interfere with catalytic functions which would otherwise POISON the catalyst.
Agasketis a mechanical sealthat fills the space between two mating surfaces, generally to prevent leakage from or into the joined objects while under compression.
GRADE | Carbon content min (%) | Oxidation resistance | Bulk Density (g/100cc) | Particle size distribution |
A-0-3 | 95.0 | 0.33 | +200# : 5% max. | |
A-0-7 | 97-98 | 94.70 | 0.31-0.32 | -200# : 100% |
C-1-0 | 96-97 | 0.62 | 52 BSS Mesh : 100% | |
A-0-6 | 96-97 | 0.20–0.22 | 300 BSS Mesh: 100% |
Water base | |||||||
PRODUCT | Specific gravity (gms/cc) | Lubricant | Particle size microns | Viscosity (cps at 25ºC) | Diluent | Packing (kgs) | |
Lubricote-Z 51 | 1.10-1.12 | Graphite | < 5 | Semi-liquid | Water | 25 200 | |
Lubricote-Z 513 | 1.14-1.16 | Graphite | < 10 | Semi liquid | Water | 25 200 |
GRADE | Carbon content min (%) | Oxidation resistance | Bulk Density (g/100cc) | Particle size distribution |
C-0-7 | 85.0-90.0 | 4.91 | 0.62 | +50# : 60% |
C-6-02 | 94.0–95.0 | 0.32 | +200# : Nil |
GRADE | Carbon content min (%) | Oxidation resistance | Bulk Density (g/100cc) | Particle size distribution |
for Alkaline Batteries | ||||
C-1-2 | 99.78 | 47.10 | 0.58 | +50 # : 1% -50+100 # : 85-87% |
C-1-5 | 99.65 | 86.50 | 0.50 | +100 # : 6.8% +200 # : 72% |
for Dry Cells | ||||
B-U-1 | 99.85 | 0.10 | Avg.3 microns | |
C-U-12 | 99.9 | 98.93 | 0.22 | D90 :<35 microns |
for cold extrusion of Zinc caps | ||||
B-1-7 | 98.0 | 96.91 | 0.32-0.35 | +350 # : 10% |
for Fuel Cells | ||||
C-U-5 | 99.0 | 0.10 | +2 microns : 50% max. | |
S-12-3 | 99.5 | 84.20 | 0.22-0.23 | +325# : 5% max. -325# : 95-97% |
Graphite in view of its lamellar structure is widely used in the production of friction materials. In the direction of motion the lamellar structure provides easy shear resulting in low friction. In highly loaded stationary surfaces, the lamellar structure has sufficient strength to prevent contact between the surfaces under pressures.
GRADE | Carbon content min (%) | Oxidation resistance | Bulk Density (g/100cc) | Particle size distribution |
B-1-3 | 99.0 | 0.22-0.24 | +350# : Nil +400# : 5% max. | |
B-1-2 | 98.0 | 99.40 | 0.32-0.33 | -100+200# : 2% |
B-1-4 | 97.0 | 72.30 | 0.58-0.60 | -100+200#: 50-60% |
C-5-03 | 95.0 | 64.80 | 0.31 | +200# : Nil |
A-0-3 | 96.0 | 0.33-0.36 | +200# : 5% max. | |
C-0-6 | 90.0 | 6.45 | 0.62 | +50# : Nil |
GRADE | Carbon content min (%) | Oxidation resistance | Bulk Density (g/100cc) | Particle size distribution |
UFG | 99.0 | 99.40 | 0.16-0.18 | +400# : Nil D90 : 10-12 Microns D50 : 5-8 Microns |
B-12-12 | 98.5 | 99.50 | 0.21-0.22 | -350# : 99.5% D90 : 15 Microns Max D50 : 8-10 Microns |
C-12-11 | 96.0-97.0 | 54.28 | 0.23-0.25 | > 63 Microns |
A-0-7 | 97.0 | 94.70 | 0.19-0.20 | +400# : Nil D90 : 3 Microns Avg |
B-1-12 | 98.0 | 0.23-0.26 | +240#: Nil +300 # : 0.2% max. +400 # : 0.5% max. |