2026-09-08
Viscosity is one of the most important but most overlooked properties of thermal grease. It determines how easily the paste flows from a syringe or pump, how well it wets the component and heat sink surfaces, and whether it stays in place under vibration. Choosing a grease with the wrong viscosity causes voids, overflow or pump-out - all of which hurt cooling performance.
Viscosity measures the resistance of the paste to flow, usually reported in mPa·s (cP) or Pa·s at a defined temperature and shear rate. Thermal greases range from thin, self-leveling liquids of a few thousand cP to thick, non-slumping pastes of several hundred thousand cP. Because grease is a concentrated suspension, its viscosity also changes with shear rate - a property called thixotropy that matters for dispensing.
| Process | Preferred viscosity | Reason |
|---|---|---|
| Syringe dispensing | Medium (10,000-100,000 cP) | Flows through the needle without dripping |
| Screen / stencil printing | Thixotropic paste | Holds the printed pattern after squeegee pass |
| Manual spreading | Wide range | Operator control compensates |
| Thin gap filling (CPU) | Low to medium | Spreads under mounting pressure |
| Vertical / vibrating assemblies | High or non-slumping | Resists running and pump-out |
A grease that is too thick may not flow into the microscopic valleys of the surface, leaving air pockets and raising thermal resistance. A grease that is too thin flows easily but can be squeezed out completely under high mounting pressure, leaving metal-to-metal contact with trapped air. The ideal viscosity lets the grease wet both surfaces fully during assembly while maintaining a stable 20-80 µm bond line afterward.
Most quality thermal greases are thixotropic: they are thick at rest but become fluid when sheared (during dispensing or stirring), then recover their structure after application. This behavior prevents dripping from the needle and slumping on vertical surfaces, while still allowing good wetting under pressure. Check the thixotropic index on the data sheet and match it to your equipment.
Viscosity falls as temperature rises. Grease dispensed in a cold factory (15°C) flows noticeably slower than the same grease at 25°C. For consistent dispensing weight, control the paste temperature and calibrate the dispenser per batch - especially in winter production.
When comparing data sheets, ask for viscosity measured at a defined shear rate (for example, Brookfield at 10 rpm and 100 rpm). The ratio between low-shear and high-shear values is the thixotropic index; a value of 2-4 usually indicates good printing behavior with stable pattern retention. Also confirm that the stated viscosity is measured at 25°C, since a difference of a few degrees changes readings by 10-20%.
Low-viscosity paste flows into gaps well but can be squeezed out under pressure, run off vertical surfaces and cause overflow contamination. It may also separate during storage, requiring re-mixing before use.
Viscosity batch variation is the most common cause. Ask the supplier for viscosity tolerance (for example, ±15%) and recalibrate dispensing time and pressure whenever a new batch arrives.
Viscosity controls how thermal grease behaves in your factory and in your product. Match the paste rheology to your dispensing process and assembly geometry, and verify it on the line before mass production. Hanast offers thermal grease grades with tailored viscosity and thixotropy for dispensing, printing and manual application - contact us for free samples and process support.