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Colloidal Organic Molybdenum Complex NANO-MOLY 2020G
Colloidal Organic Molybdenum Complex NANO-MOLY 2020G
Product Name: NANO-MOLY 2020G
Chemical composition: Colloidal organic molybdenum complex
Category:
Keywords:
Colloid Compound
Product Overview
NANO-MOLY 2020G is a colloidal organic molybdenum‑based additive with a high decomposition temperature and excellent thermal stability. It significantly reduces the coefficient of friction while delivering energy‑saving, anti‑friction, anti‑wear, extreme‑pressure, and antioxidant performance. Under severe operating conditions—such as high speed, high temperature, and high pressure—it decomposes to form a nanoscale layered molybdenum disulfide chemical reaction film that adheres to metal surfaces in a laminar microcrystalline structure, thereby providing outstanding friction reduction, wear resistance, and extreme‑pressure capabilities. This product is widely used in premium lubricating greases, including lithium‑based, complex lithium‑based, polyurea, complex aluminum‑based, and complex calcium‑sulfonate‑based greases, effectively suppressing bearing temperature rise and vibration, and markedly extending bearing service life and operational reliability.
Performance Features
① Safe and non-irritating: odorless, non-irritating to skin and eyes, non‑contact toxic, non‑corrosive to metals, and compliant with EU technical requirements for imported additives.
② High dispersion efficiency: It can be easily dispersed into grease without the need for homogenization, effectively improving production efficiency.
③ Multi‑functional lubricity: Exhibits excellent energy‑saving and friction‑reducing, anti‑wear, extreme‑pressure, and antioxidant properties, significantly lowering the coefficient of friction, reducing wear, inhibiting high‑temperature oxidation of the grease, and effectively protecting metal surfaces.
④ Synergistic Effect: When compounded with ester-based friction modifiers and boron‑containing friction improvers, it synergistically reduces the coefficient of friction while maintaining low‑friction durability, thereby significantly extending bearing service life.
⑤ Excellent inert compatibility: It does not disrupt the colloidal structure of greases and does not compromise other physicochemical properties, making it suitable for high‑end greases such as polyurea, lithium‑based, complex lithium‑based, and complex aluminum‑based greases, and can fully or partially replace molybdenum disulfide (MoS₂).
Scope of Application
It is used in high‑grade lubricating greases such as lithium‑based greases, complex lithium‑based greases, polyurea greases, complex aluminum‑based greases, and complex calcium‑sulfonate greases, and can fully or partially replace molybdenum disulfide (MoS₂).
Recommended dosage
Lubricating grease: 1%–15%
Packaging specifications
20L plastic drum, net weight 18 kg per drum.
Technical indicators
| Project |
Typical data |
Test method |
| Appearance |
Yellow paste-like substance |
Visual estimation |
| Particle size, μm |
D90 ≤ 10 |
GB/T 19077 |
| Non-working penetration, 0.1 mm |
345 |
GB/T 269 |
| Sulfur content, % |
9 |
SH/T 0303 |
| Molybdenum content, % |
10 |
SH/T 0605 |
Note: The data listed in the table above are typical values and are provided for reference only.
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