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Synthesis and radiation shielding properties of polyimide/Bi2O3 composites

机译:聚酰亚胺/ Bi2O3复合材料的合成及辐射屏蔽性能

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摘要

Radiation shielding composites based on polyimide and Bi2O3 were synthesized. Surface and physical-mechanical properties of polyimide/Bi2O3 composites were studied. Bi2O3 particles were modified by polymethylphenylsiloxane for the uniform distribution of filler in composites. This paper presents data on the production of composites in two ways: hot- and cold-pressing. The hot-pressing method for the synthesis of composites is preferable compared to the cold-pressing method (the density increases by 10–12%, and the Vickers microhardness by 10–20%). The results show that the introduction of Bi2O3 significantly increases the thermal stability of the composites. At 680 °C, a polymer composite containing 10 wt% Bi2O3 retains 9.7% of its mass, and at 60 wt% Bi2O3, retains 58.4%. The radiation-protective characteristics of the composites with respect to gamma radiation were evaluated by experimental and theoretical methods. High radiation-protective characteristics of the composites have been established in the gamma-quanta energy range of 0.1–1 MeV.
机译:合成了基于聚酰亚胺和Bi 2 O 3的辐射屏蔽复合材料。研究了聚酰亚胺/ Bi2O3复合材料的表面和物理力学性能。 Bi2O3颗粒用聚甲基苯基硅氧烷改性,以使填料均匀分布在复合材料中。本文以两种方式介绍了复合材料的生产数据:热压和冷压。与冷压法相比,复合材料的热压法更可取(密度增加10–12%,维氏显微硬度提高10–20%)。结果表明,Bi 2 O 3的引入显着提高了复合材料的热稳定性。在680℃下,包含10wt%Bi 2 O 3的聚合物复合材料保留其质量的9.7%,而在60wt%Bi 2 O 3时,保留58.4%。通过实验和理论方法评价了复合材料对γ射线的辐射防护特性。在0.1-1 MeV的伽马量子能范围内,已经确定了复合材料的高辐射防护特性。

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