KF-96 500CS high-temperature resistant dimethyl silicone oil
The Japanese Shin-Etsu KF-96 500CS is a high-viscosity dimethylsilicone oil product under the Shin-Etsu brand. With a viscosity of 500CS, it is colorless and transparent in appearance. The standard packaging is 1kg. This product has excellent adhesion and durability, stable lubrication, demolding, and protective properties, and is suitable for industrial manufacturing, maintenance, assembly, and process support scenarios related to organic silicon chemicals.
Product Details
Product features
High viscosity: With a viscosity grade of 500CS, this product forms a durable film and has excellent adhesion, providing long-lasting lubrication effects.
Wide temperature range: The dimethylsilicone oil system offers stable performance across both high and low temperatures, with good chemical inertness.
Quality assurance: Based on the original organic silicon technology from Shinyuan, this product ensures stable batches and reliable performance.
Typical applications
Suitable for industrial manufacturing, equipment maintenance, assembly lubrication, and various process support scenarios, such as demolding, lubrication, protection, and anti-sticking.
- Product Name
- KF-96 500CS high-temperature resistant dimethyl silicone oil
- Brand
- Shin-Etsu
- Category
- Organic silicon chemicals
- Color
- Colorless and transparent
- Packaging
- 1kg
- Main Application
- The Japanese Shin-Etsu KF-96 500CS is a high-viscosity dimethylsilicone oil product under the Shin-Etsu brand. With a viscosity of 500CS, it is colorless and transparent in appearance. The standard packaging is 1kg. This product has excellent adhesion and durability, stable lubrication, demolding, and protective properties, and is suitable for industrial manufacturing, maintenance, assembly, and process support scenarios related to organic silicon chemicals.
- Service Support
- We can help confirm TDS, MSDS, RoHS, COA and other documents, and provide communication on samples, quotations, lead times and alternative models.