Materials Chemistry and Physics, Vol.83, No.2-3, 255-259, 2004
Damage effects and mechanisms of proton irradiation on methyl silicone rubber
A study was performed on the damage effects and mechanisms of proton irradiation with 150 keV energy to space-grade methyl silicone rubber. The changes in surface morphology, mechanical properties, infrared attenuated total reflection (ATR) spectrum, mass spectrum and pyrolysis gas chromatography-mass spectrum (PYGC-MS) indicated that, under lower fluence, the proton radiation would induce cross-linking effect, resulting in an increase in tensile strengths and hardness of the methyl silicon rubber. However, under higher proton fluence, the radiation-induced degradation, which decreased the tensile strengths and hardness, became a dominant effect. A macromolecular-network destruction model for the silicone rubber radiated with the protons was proposed. (C) 2003 Elsevier B.V. All rights reserved.
Keywords:methyl silicone rubber;proton irradiation;tensile strength;infrared spectrum;damage mechanism