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高能光子衰减的理论测定以及柔性和增强尺寸稳定性的木材/天然橡胶及天然橡胶复合材料的推荐防护填料含量

Theoretical Determination of High-Energy Photon Attenuation and Recommended Protective Filler Contents for Flexible and Enhanced Dimensionally Stable Wood/NR and NR Composites.

作者信息

Poltabtim Worawat, Toyen Donruedee, Saenboonruang Kiadtisak

机构信息

Department of Applied Radiation and Isotopes, Faculty of Science, Kasetsart University, Bangkok 10900, Thailand.

Scientific Equipment and Research Division, Kasetsart University Research and Development Institute (KURDI), Kasetsart University, Bangkok 10900, Thailand.

出版信息

Polymers (Basel). 2021 Mar 11;13(6):869. doi: 10.3390/polym13060869.

Abstract

This work aimed to theoretically determine the high-energy-photon-shielding properties of flexible wood/natural rubber (NR) and NR composites containing photon protective fillers, namely Pb, BiO, or BiS, using XCOM. The properties investigated were the mass attenuation coefficient (), linear attenuation coefficient (), and half value layer () of the composites, determined at varying photon energies of 0.001-5 MeV and varying filler contents of 0-1000 parts per hundred parts of rubber by weight (phr). The simulated results, which were in good agreement with previously reported experimental values (average difference was 5.3%), indicated that overall shielding properties increased with increasing filler contents but decreased with increasing incident photon energies. The results implied the potential of bismuth compounds, especially BiO, to replace effective but highly toxic Pb as a safer high-energy-photon protective filler, evidenced by just a slight reduction in values compared with Pb fillers at the same filler content and photon energy. Furthermore, the results suggested that the addition of 20 phr wood particles, primarily aimed to enhance the rigidity and dimensional stability of Pb/NR, BiO/NR, and BiS/NR composites, did not greatly reduce shielding abilities; hence, they could be used as dimensional reinforcers for NR composites. Lastly, this work also reported the optimum Pb, BiO, or BiS contents in NR and wood/NR composites at photon energies of 0.1, 0.5, 1, and 5 MeV, with 316-624 phr of filler being the recommended contents, of which the values depended on filler type and photon energy of interest.

摘要

本研究旨在利用XCOM理论测定柔性木材/天然橡胶(NR)以及含有光子防护填料(即铅、氧化铋或硫化铋)的NR复合材料的高能光子屏蔽性能。所研究的性能包括复合材料的质量衰减系数()、线性衰减系数()和半价层(),这些性能是在0.001 - 5 MeV的不同光子能量以及0 - 1000重量份每百份橡胶(phr)的不同填料含量下测定的。模拟结果与先前报道的实验值高度吻合(平均差异为5.3%),表明总体屏蔽性能随填料含量的增加而提高,但随入射光子能量的增加而降低。结果表明铋化合物,尤其是氧化铋,有潜力替代有效但剧毒的铅,作为更安全的高能光子防护填料,在相同填料含量和光子能量下,与铅填料相比,其值仅略有降低即可证明。此外,结果表明添加20 phr的木材颗粒,主要目的是提高铅/NR、氧化铋/NR和硫化铋/NR复合材料的刚性和尺寸稳定性,并不会大幅降低屏蔽能力;因此,它们可用作NR复合材料的尺寸增强剂。最后,本研究还报告了在0.1、0.5、1和5 MeV光子能量下,NR和木材/NR复合材料中铅、氧化铋或硫化铋的最佳含量,推荐含量为316 - 624 phr,其中这些值取决于填料类型和感兴趣的光子能量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5ec1/7998293/43fc8842e91b/polymers-13-00869-g001.jpg

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