Pulley Lagging
Application: Ceramic rubber wear-resistant sheets for rollers can be used in many fields and industries, such as mining, light industry, chemical industry, metallurgy, building materials, etc. It has a wide range of applications and is mainly suitable for occasions that require wear resistance and impact resistance.
The pulley lagging is a new type of wear-resistant material, which is composed of a rubber layer and a ceramic block. The wear-resistant sheet has excellent wear resistance, and repairing a severely worn roller can prolong its service life, while maintaining the smooth surface of the roller and improving production efficiency.
Specifications
|
Series |
BM92 |
BMG95 |
|
AL2O3 (%) |
92±0.5 |
95±0.5 |
|
Bulk density(g/cm3) |
≥3.6 |
≥3.65 |
|
Compressive strength (MPa) |
≥1050 |
≥1300 |
|
Bending strength (MPa) |
≥220 |
≥250 |
|
Fracture toughness (MPam1/2) |
≥3.70 |
≥3.80 |
|
Rockwell hardness (HRA) |
≥82 |
≥85 |
|
Loss bulk (cm3) |
≤0.25 |
≤0.2 |

Why we suggest pulley lagging?
1. Good wear resistance: The ceramic material has high hardness, which can effectively resist external force wear and greatly prolong the service life of the roller.
2. Strong impact resistance: Due to the existence of the rubber layer, the pulley lagging has good elasticity and cushioning effect, and can effectively absorb impact.
3. Strong adhesion: the perfect fusion of vulcanized ceramics and rubber, strong adhesion, can be used for a long time in harsh environments.
4. Simple maintenance: Since the wear-resistant sheet can perfectly fit the surface of the drum, it is only necessary to disassemble the original wear-resistant sheet and install a new one when replacing it.
What equipments can it be used on?
Pulley lagging for rollers can be used in various roller machines, including belt conveyors, conveyors, crushers, vibrating screens, mills, coolers, etc. The wear-resistant sheet is tailored to the size and shape of the drum surface of different machines to ensure a tight fit with the drum and maximize the operating efficiency of the machine.
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