Molyslip Copper Anti-Seize Grease 100g Tube
High-temperature Anti-Seize Compound
-40°C up to +1100°C
100g Tube
Features & Benefits
- Consistent Friction: Maintains a steady and uniform level of friction between threads.
- Anti-Galling and Anti-Seizure Properties: Shields against galling and seizure, ensuring smooth and reliable operations.
- Rust and Corrosion Protection: Provides a protective barrier, safeguarding against rust and corrosion for long-lasting performance.
- Easy Assembly of Tight-Tolerance Components: Facilitates the assembly of precision parts, allowing for seamless integration.
- High-Temperature Endurance: Capable of withstanding extreme temperatures up to +1100°C, ensuring reliability even in challenging environments.
COPASLIP is a high-performance compound expertly designed to shield fasteners from seizures caused by extreme temperatures, pressure, and corrosion. Its advanced formulation features a semi-synthetic base fluid, fortified with anti-oxidants, corrosion inhibitors, and ultra-pure copper particles, ensuring exceptional protection for threads and components. With COPASLIP, you can trust in the reliability and longevity of your fasteners even in the harshest conditions.
COPASLIP is engineered to reduce frictional variations between threads, ensuring precise and uniform assembly. This high-performance compound also effectively prevents galling and seizure during both assembly and dismantling processes, even after extended exposure to extreme temperatures, corrosive surroundings, or high-pressure situations. With COPASLIP, you can count on reliable and consistent performance, regardless of the challenging conditions.
Technical Data
Property | Result |
---|---|
Consistency | NLGI 2 |
Base oil viscosity | 100 cSt |
Drop point | >300°C (non-melting) |
Flashpoint (IP34) | >200°C |
Effective temperature range | -40°C up to +1100°C |
Solidification point (of the base fluid) | -20°C |
Coefficient of friction (steel on steel, steady-state) | 0.12 |
When a compound is applied to a threaded fastener that will be tightened to a specific torque setting, the torque setting will require adjustment to allow for the lubricating effect of the compound. Failure to do so can result in incorrect tension in the fastener.
Correct torque settings can be calculated using the tables and charts below and the standard thread equation:
T = KDP
T = Torque (N.m), D = Diameter (m), P = Clamping force (N), K = Nut factor
Material | K Nut factor |
---|---|
8.8 Steel self-coloured | 0.14 |
8.8 Steel BZP | 0.10 |
8.8 Steel hot-dip galvanised | 0.14 |
A2 Stainless steel | 0.13 |
Brass | 0.12 |
Datasheets |
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