XYC FG-720 Fluorosilicone Oil Grease - Chemical Resistant Lubricant 1KG

XYC FG-720 1KG
XYC FG-720 Fluorosilicone Oil Grease is a chemical-resistant lubricant designed for demanding applications, featuring exceptional resistance to solvents and chemicals due to its fluorosilicone oil base and fine fluororesin powder thickener. It maintains stable lubrication across a broad temperature range (-40℃ to 200℃) and in harsh conditions such as high vacuum and pressure, making it suitable for chemical, electronic, and precision machinery. The grease also prioritizes safety and environmental compatibility, complying with RoHS and REACH standards.
minimum order: 
1 piece
Supply Ability: 
10000piece / Month
Country of Origin: 
China
Stock Time: 
3Day
Quantity:
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XYC FG-720 Fluorosilicone Oil Grease - Chemical Resistant Lubricant 1KG

Detailed Information

- Product Series: XYC FG-720 Series
- Specific Model: XYC FG-720
- Base Oil Type: Fluorosilicone Oil
- Type: Fluorosilicone oil grease, chemical resistant lubricant, high temperature lubricant.
- Thickener: Fine fluororesin powder as a thickener, along with special additives to enhance lubrication performance.
- Molecular Structure Characteristics: The molecular backbone of fluorosilicone oil consists of alternately connected silicon-oxygen bonds, with trifluoropropyl functional groups on the side chains. This molecular design imparts chemical inertness to the material, enabling stable resistance to hydrocarbons, strong oxidizing agents, and other challenging substances.
- Formulation Process: Advanced emulsification techniques are employed to ensure uniform dispersion of fine fluororesin powder within the fluorosilicone oil matrix, creating a composite system with superior interface lubrication properties.

Characteristics

The three core performance advantages of XYC FG-720 grease allow it to stand out in specific application scenarios:
1. Exceptional Solvent and Chemical Resistance:
    - Demonstrates excellent resistance to commonly used industrial solvents such as ketones, esters, oils, and cleaning agents.
    - Maintains stable performance in corrosive chemical environments like strong acids and alkalis.
    - After prolonged exposure to solvents, the internal structure of the lubricant remains nearly unchanged, with only slight whitening on the surface.
    - These characteristics make it particularly suitable for equipment such as chemical reactors and pipeline valves that must withstand highly corrosive environments.
2. Outstanding Interface Lubrication Properties:
    - Retains stable lubrication performance even under high-speed and high-load conditions.
    - Forms a uniform and stable lubrication film, effectively reducing friction and wear.
    - Provides reliable lubrication in harsh environments such as high vacuum, high temperature, and high pressure.
    - Compared to traditional silicone-based lubricants, XYC FG-720 grease has a lower coefficient of friction, better mitigating mechanical wear.
3. Broad Temperature Adaptability:
    - Operates within a temperature range of -40℃ to 200℃, meeting lubrication needs under extreme temperature conditions.
    - Exhibits low oil separation and minimal volatility in high-temperature environments, ensuring stable lubrication performance.
    - Maintains good lubrication properties in low-temperature environments, preventing difficulties in cold starts.
4. Safety and Environmental Compatibility:
    - Fluorosilicone oil, as the base oil, is physiologically inert and harmless to humans.
    - Complies with environmental certification standards such as RoHS and REACH.
    - Features low volatility, reducing environmental pollution and health risks.

Application Areas

The XYC FG-720 grease is primarily used in the following scenarios and equipment types:
1. Chemical Equipment:
    - Lubrication of bearings and sealing components in chemical reactors.
    - Sealing and lubrication of pipeline valves.
    - Pump and compressor components exposed to corrosive chemicals.
2. Precision Electronic Equipment:
    - Lubrication and sealing of semiconductor equipment (e.g., wafer transfer devices).
    - Sealing and lubrication of high-vacuum equipment (e.g., vacuum pumps).
    - Long-term lubrication of precision components inside electronic instruments.
3. Precision Machinery:
    - Long-term lubrication of high-speed rotating bearings.
    - Low-speed rotational lubrication of sliding rail components.
    - Protection of mechanical components under high-load conditions.
4. Special Environment Equipment:
    - Equipment operating in environments with industrial solvents like oils and cleaners.
    - Equipment requiring resistance to highly corrosive chemicals.
    - Devices functioning in high-temperature, high-humidity, or low-temperature, extreme cold conditions.

Technical Specifications and Usage Recommendations

1. Physical Characteristics:
    - Appearance: White to pale yellow paste (similar to G-501).
    - Consistency: Moderate, suitable for dynamic component lubrication.
    - Density: Approximately 1.25-1.35 g/cm³ (fluorosilicone oil characteristics).
    - Coefficient of Friction: Low, superior to traditional silicone-based lubricants.
2. Usage Recommendations:
    - Surface Cleaning: Ensure the lubricated area is clean, dry, and free of oil and impurities before use.
    - Appropriate Application: Apply an appropriate amount based on component size; excessive application may affect performance.
    - Regular Maintenance: For extreme environments, regularly check the lubrication condition and replenish as needed.
    - Applicable Components: Bearings, sliding rails, gears, and other parts requiring long-term lubrication in chemical environments.
    - Non-Applicable Scenarios: Pure plastic components (G-501 series recommended), ultra-low temperature equipment (below -50°C, G-30 series recommended).

Precautions

- Use promptly after opening to avoid prolonged exposure to air.
- Avoid contact with strong oxidizers, which may affect lubricant performance.
- Store in a cool, dry, and shaded place at temperatures below 25°C.
- Conduct small-scale testing before use to ensure compatibility with specific materials.