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Resistance to proton radiation of nano-TiO2 modified silicone rubber

机译:纳米TiO2改性硅橡胶的耐质子辐射性能。

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摘要

The damage caused by 150 keV proton irradiation for two kinds of methyl silicone rubber, including the silicone rubber reinforced with MQ silicone resin (M-SR) and the silicone rubber modified with nano-TiO2 particles based on the M-SR rubber (T-SR), was studied using a space combined irradiation simulator. In terms of the changes in surface morphology, mass loss and mechanical properties, as well as microstructure, the resistance to proton irradiation of the T-SR were evaluated. Experimental results show that there are aging cracks appearing on the surface of M-SR silicone rubber after irradiation. With the increase of proton fluence, the mass loss ratio of MSR silicone rubber increases. The effects of cross-linking and degradation caused by proton irradiation in the M-SR lead to the corresponding changes in mechanical properties, including hardness, tensile strength and elongation at break, as well as the storage modulus and the glass temperature. The damage effect of the T-SR under the same condition of proton irradiation is similar to that of the M-SR, but the magnitude of damage of the T-SR is lower, which showing a better resistance performance to proton irradiation. (c) 2006 Elsevier B.V. All rights reserved.
机译:150 keV质子辐照对两种甲基硅橡胶造成的损害,包括用MQ硅树脂(M-SR)增强的硅橡胶和以M-SR橡胶为基础的纳米TiO2颗粒改性的硅橡胶(T- SR),是使用空间组合辐射模拟器进行研究的。根据表面形态,质量损失,机械性能以及微观结构的变化,评估了T-SR的质子辐射耐受性。实验结果表明,辐照后M-SR硅橡胶表面出现老化裂纹。随着质子注量的增加,MSR硅橡胶的质量损失率增加。 M-SR中质子辐照引起的交联和降解效应导致相应的机械性能变化,包括硬度,抗张强度和断裂伸长率,储能模量和玻璃温度。在相同的质子辐照条件下,T-SR的损伤效果与M-SR相似,但T-SR的损伤程度较低,表现出更好的质子辐照抵抗性能。 (c)2006 Elsevier B.V.保留所有权利。

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