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Modified Phenyl Silicone Rubber: Pushing the Boundaries of Performance Enhancement

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Advancements in materials science have driven research into the modification and optimization of phenyl silicone rubber, resulting in enhanced properties. Incorporating various monomers and modification techniques has led to significant improvements.

Modification Techniques:

Copolymerization: Introducing phenyl groups onto the side chains of polysiloxanes through copolymerization enhances stability and durability in extreme temperatures.
Filler Modification: Adding specific inorganic fillers or modifiers like silica black enhances mechanical strength and heat resistance.
Structural Adjustment: Tailoring phenyl content creates customized versions with varying properties, such as low-phenyl for low-temperature flexibility, medium-phenyl for flame resistance, and high-phenyl for radiation tolerance.
Future Outlook:

Environmental Trends: Emphasis on low VOC and non-toxic phenyl silicone rubber aligns with growing environmental concerns.
Multifunctionality: Integrating nanotechnology and composites could impart self-healing, antibacterial, and conductive properties.
Expanded Applications: With continuous improvements, phenyl silicone rubber will find new niches in wearables, electric vehicles, and smart manufacturing.

HTV phenyl silicone rubber IOTA120

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