Methylphenyl silicone oil

Methylphenyl silicone oil

Phenyl-modified silicone oil, which exhibits excellent thermal stability and lubricity, is used in high- and low-temperature-resistant lubricants, release agents, precision optical instruments, and more.

Product Features and Advantages

High-temperature resistant (up to 300°C)

Low-temperature resistant (-70°C)

Low volatility

Good lubricity

Compatible with a variety of materials

 

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Product Series

(Customized formulations can be provided based on customer requirements.)

Grade

File Description

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SDS Download

CSGW-H312-4

Phenyl‑containing polymethylsiloxanes are obtained by introducing phenyl groups into the molecular chains of dimethylpolysiloxane. Compared with dimethylpolysiloxane, they exhibit superior high‑temperature resistance, radiation resistance, lubricity, and solubility.

CSGW-H310

Phenyl‑containing polymethylsiloxanes are obtained by introducing phenyl groups into the molecular chains of dimethylpolysiloxane. Compared with dimethylpolysiloxane, they exhibit superior high‑temperature resistance, radiation resistance, lubricity, and solubility.

CSGW-H314

Phenyl‑containing polymethylsiloxanes are obtained by introducing phenyl groups into the molecular chains of dimethylpolysiloxane. Compared with dimethylpolysiloxane, they exhibit superior high‑temperature resistance, radiation resistance, lubricity, and solubility.

CSGW-H356

Phenyl‑containing polymethylsiloxanes are obtained by introducing phenyl groups into the molecular chains of dimethylpolysiloxane. Compared with dimethylpolysiloxane, they exhibit superior high‑temperature resistance, radiation resistance, lubricity, and solubility, while also providing excellent skin‑feel modulation, film‑forming properties, and compatibility—making them well suited to meet the formulation requirements of the cosmetics and personal care industries.

CSGW-H362

Phenyl‑containing polymethylsiloxanes are obtained by introducing phenyl groups into the molecular chains of dimethylpolysiloxane. Compared with dimethylpolysiloxane, they exhibit superior high‑temperature resistance, radiation resistance, lubricity, and solubility.

CSGW-S560

Phenyl‑containing polymethylsiloxanes are obtained by introducing phenyl groups into the molecular chains of dimethylpolysiloxane. Compared with dimethylpolysiloxane, they exhibit superior high‑temperature resistance, radiation resistance, lubricity, and solubility.

CSGW-Y4501

Phenyl‑containing polymethylsiloxanes are obtained by introducing phenyl groups into the molecular chains of dimethylpolysiloxane. Compared with dimethylpolysiloxane, they exhibit superior high‑temperature resistance, radiation resistance, lubricity, and solubility.

CSGW-Y4502

Phenyl‑containing polymethylsiloxanes are obtained by introducing phenyl groups into the molecular chains of dimethylpolysiloxane. Compared with dimethylpolysiloxane, they exhibit superior high‑temperature resistance, radiation resistance, lubricity, and solubility.

CSGW-Y4503

Phenyl‑containing polymethylsiloxanes are obtained by introducing phenyl groups into the molecular chains of dimethylpolysiloxane. Compared with dimethylpolysiloxane, they exhibit superior high‑temperature resistance, radiation resistance, lubricity, and solubility.

CSGW-Y4504

Phenyl‑containing polymethylsiloxanes are obtained by introducing phenyl groups into the molecular chains of dimethylpolysiloxane. Compared with dimethylpolysiloxane, they exhibit superior high‑temperature resistance, radiation resistance, lubricity, and solubility.

CSGW-Y4505

Phenyl‑containing polymethylsiloxanes are obtained by introducing phenyl groups into the molecular chains of dimethylpolysiloxane. Compared with dimethylpolysiloxane, they exhibit superior high‑temperature resistance, radiation resistance, lubricity, and solubility.