ShinEtsu G-330 – Medium Damping Grease for Automotive & Electronics
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ShinEtsu G-330 is a medium torque silicone damping grease designed to deliver smooth, controlled movement in precision mechanical assemblies. It provides a stable and consistent operating feel during rotation or sliding, allowing users to achieve accurate motion control without abrupt changes in resistance. During long-term use, it maintains uniform tactile response and predictable damping behavior, supporting reliable performance in components that require refined mechanical control.
Products parameters
| Composition: | Silicone Damping Grease |
| Appearance: | Colorless To Slightly Hazy Grease |
| Viscosity 25 °C Mm²/s: | ~3,000 |
| Specific Gravity At 25 °C: | ~1.00 |
| Refractive Index At 25 °C: | ~1.403 |
| Packaging: | 1KG |
Key features
Medium Viscosity - ShinEtsu G-330 Medium Damping Grease has a kinematic viscosity of approximately 3,000 mm²/s at 25 ℃, positioning it in the medium torque range for damping applications. This viscosity supports controlled resistance while allowing smooth initiation and termination of movement. It enables balanced damping performance for rotational and sliding mechanisms requiring precise motion control.
Density Stability - With a specific gravity of approximately 1.00 at 25 ℃, ShinEtsu G-330 maintains stable mass distribution within mechanical interfaces. This density level helps prevent grease displacement during operation and supports consistent damping force. It contributes to predictable mechanical response during repeated motion cycles.
Shear Control - ShinEtsu G-330 is formulated to maintain stable shear resistance under continuous mechanical movement. The grease resists thinning during repeated shear exposure, supporting consistent torque output. This characteristic supports uniform damping performance over extended service periods.
Surface Adhesion - Supported by a refractive index of approximately 1.403 at 25 ℃, ShinEtsu G-330 forms a stable lubricating film on metal and plastic contact surfaces. This adhesion helps retain the grease within contact zones under dynamic movement. It supports long-term damping stability without frequent replenishment.
Thermal Consistency - ShinEtsu G-330 Medium Damping Grease maintains controlled viscosity behavior across typical operating temperature ranges encountered in consumer and automotive mechanisms. The grease resists excessive softening or hardening due to temperature variation. This stability supports consistent damping feel during environmental changes.
Automotive Switches - ShinEtsu G-330 is applied in automotive switch mechanisms where controlled rotational resistance is required. Its medium torque characteristics support smooth actuation and stable return behavior. This helps maintain consistent switch feel throughout the vehicle service life.
Control Knobs - In control knob assemblies, ShinEtsu G-330 provides balanced damping that supports precise user input. The grease maintains uniform resistance during repeated adjustments. This contributes to consistent tactile quality in adjustment mechanisms.
Electronic Controls - ShinEtsu G-330 is used in consumer electronic control interfaces requiring smooth sliding or rotational motion. Its stable shear properties support accurate positioning and reduced mechanical noise. This enhances long-term control reliability in electronic devices.
Audio Dials - In audio equipment dials, ShinEtsu G-330 supports smooth rotational movement with controlled resistance. The grease helps maintain consistent adjustment feel over extended usage. This supports precise tuning and volume control performance.
Office Sliders - ShinEtsu G-330 is suitable for office equipment sliders requiring smooth and controlled linear movement. Its medium viscosity supports stable resistance without stick-slip behavior. This contributes to reliable mechanical operation in daily-use equipment.
Precision Assemblies - ShinEtsu G-330 is applied in precision mechanical assemblies where predictable damping is required. The grease supports consistent motion control under repeated operation. This helps maintain functional accuracy in finely engineered components.