General purpose silicone composed of polymer chains with unique flexibility. It has virtually no energy barrier for rotation resulting in one of the lowest glass-transition temperatures of any polymer.
General purpose silicone composed of polymer chains with unique flexibility. It has virtually no energy barrier for rotation resulting in one of the lowest glass-transition temperatures of any polymer.
General purpose silicone composed of polymer chains with unique flexibility. It has virtually no energy barrier for rotation resulting in one of the lowest glass-transition temperatures of any polymer.
General purpose silicone composed of polymer chains with unique flexibility. It has virtually no energy barrier for rotation resulting in one of the lowest glass-transition temperatures of any polymer.
General purpose silicone composed of polymer chains with unique flexibility. It has virtually no energy barrier for rotation resulting in one of the lowest glass-transition temperatures of any polymer.
General purpose silicone composed of polymer chains with unique flexibility. It has virtually no energy barrier for rotation resulting in one of the lowest glass-transition temperatures of any polymer.
General purpose silicone composed of polymer chains with unique flexibility. It has virtually no energy barrier for rotation resulting in one of the lowest glass-transition temperatures of any polymer.
General purpose silicone composed of polymer chains with unique flexibility. It has virtually no energy barrier for rotation resulting in one of the lowest glass-transition temperatures of any polymer.
General purpose silicone composed of polymer chains with unique flexibility. It has virtually no energy barrier for rotation resulting in one of the lowest glass-transition temperatures of any polymer.
General purpose silicone composed of polymer chains with unique flexibility. It has virtually no energy barrier for rotation resulting in one of the lowest glass-transition temperatures of any polymer.
General purpose silicone composed of polymer chains with unique flexibility. It has virtually no energy barrier for rotation resulting in one of the lowest glass-transition temperatures of any polymer.
Easy to use, water-dilutable, fine particle dispersion of conventional polydimethylsiloxane fluid. Employed as a release agent and lubricant in a variety of rubber and plastic applications.
General purpose silicone composed of polymer chains with unique flexibility. It has virtually no energy barrier for rotation resulting in one of the lowest glass-transition temperatures of any polymer.
General purpose silicone composed of polymer chains with unique flexibility. It has virtually no energy barrier for rotation resulting in one of the lowest glass-transition temperatures of any polymer.
Volatile, low molecular weight dimethylsiloxane suitable for extreme vacuum applications including systems deployed in space exploration and communication.
General purpose silicone composed of polymer chains with unique flexibility. It has virtually no energy barrier for rotation resulting in one of the lowest glass-transition temperatures of any polymer.
Volatile, low molecular weight dimethylsiloxane suitable for extreme vacuum applications including systems deployed in space exploration and communication.
Easy to use, water-dilutable, fine particle dispersion of conventional polydimethylsiloxane fluid. Employed as a release agent and lubricant in a variety of rubber and plastic applications.
General purpose silicone composed of polymer chains with unique flexibility. It has virtually no energy barrier for rotation resulting in one of the lowest glass-transition temperatures of any polymer.
General purpose silicone composed of polymer chains with unique flexibility. It has virtually no energy barrier for rotation resulting in one of the lowest glass-transition temperatures of any polymer.
General purpose silicone composed of polymer chains with unique flexibility. It has virtually no energy barrier for rotation resulting in one of the lowest glass-transition temperatures of any polymer.
Volatile, low molecular weight dimethylsiloxane suitable for extreme vacuum applications including systems deployed in space exploration and communication.
Easy to use, water-dilutable, fine particle dispersion of conventional polydimethylsiloxane fluid. Employed as a release agent and lubricant in a variety of rubber and plastic applications.
General purpose silicone composed of polymer chains with unique flexibility. It has virtually no energy barrier for rotation resulting in one of the lowest glass-transition temperatures of any polymer.
General purpose silicone composed of polymer chains with unique flexibility. It has virtually no energy barrier for rotation resulting in one of the lowest glass-transition temperatures of any polymer.
General purpose silicone composed of polymer chains with unique flexibility. It has virtually no energy barrier for rotation resulting in one of the lowest glass-transition temperatures of any polymer.
Easy to use, water-dilutable, fine particle dispersion of conventional polydimethylsiloxane fluid. Employed as a release agent and lubricant in a variety of rubber and plastic applications.
General purpose silicone composed of polymer chains with unique flexibility. It has virtually no energy barrier for rotation resulting in one of the lowest glass-transition temperatures of any polymer.
General purpose silicone composed of polymer chains with unique flexibility. It has virtually no energy barrier for rotation resulting in one of the lowest glass-transition temperatures of any polymer.
General purpose silicone composed of polymer chains with unique flexibility. It has virtually no energy barrier for rotation resulting in one of the lowest glass-transition temperatures of any polymer.
General purpose silicone composed of polymer chains with unique flexibility. It has virtually no energy barrier for rotation resulting in one of the lowest glass-transition temperatures of any polymer.
General purpose silicone composed of polymer chains with unique flexibility. It has virtually no energy barrier for rotation resulting in one of the lowest glass-transition temperatures of any polymer.
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