Development of Polymer Composites in Radiation Shielding Applications: A Review

被引:0
作者
Chenhao Zeng
Qing Kang
Zhongshan Duan
Bing Qin
Xiaojie Feng
Haoyuan Lu
Yuanye Lin
机构
[1] Army Logistical University of PLA,Department of Military Installation
来源
Journal of Inorganic and Organometallic Polymers and Materials | 2023年 / 33卷
关键词
Radiation shielding; Polymer-based materials; Metal-based materials; Fabric-base materials; Space radiation shielding materials;
D O I
暂无
中图分类号
学科分类号
摘要
Radiation shielding materials based on composites play a crucial role in safeguarding nuclear-related installations, equipment, and employees from harmful radiation. With the advent of new and challenging nuclear security conditions, the development of radiation-protective materials has undergone significant changes. Thanks to the advancements in science and technology, especially in the field of nanomaterials technology, it is now possible to produce radiation protection materials that offer high all-around performance. This article discusses the current research on composite-based radiation shielding materials. It first describes the current state and distribution of radiation shielding studies worldwide. Then, it categorizes and reviews composite-based radiation protection materials, taking into account the study topic and the field’s requirements. The three broad categories of composite-based radiation protection materials are polymer-based composites, metal-based composites, and fabric-based composites. Space radiation shielding materials are categorized separately (as a point of reference). The mechanical, thermal, and shielding properties of radiation protection materials are briefly discussed here. In addition, the primary research challenges are outlined along with the research methodologies that academics employ to examine properties and property change trends. Finally, a summary of the properties of the radiation protection materials discussed in the complete paper is provided, followed by an analysis of the current research gaps and potential future paths.
引用
收藏
页码:2191 / 2239
页数:48
相关论文
共 864 条
[61]  
Prise KM(2018) composites Int. J. Adv. Res. 190 1-3127
[62]  
Chancellor JC(2020)Preparation and performance evaluation of x-ray-shielding barium sulfate film for medical diagnosis using PET recycling and multi-carrier principles Acta Astronaut. 147 85-4774
[63]  
Blue RS(2022)Tungsten-based hybrid composite shield for medical radioisotope defense Radiat. Phys. Chem. 179 109261-573
[64]  
Cengel KA(2022)Radiation-shielding properties of titanium dioxide-added composites Acta Astronaut. 180 109316-572
[65]  
Silindir M(2018)Radiation shielding properties of borided Fe–Ni alloys Radiat. Phys. Chem. 200 110379-1668
[66]  
Özer AY(2022)Numerical investigation of radiation shielding properties of polyethylene-based nanocomposite materials in different space environments Polymers 64 301-415
[67]  
Fertey J(2021)Radiation shielding and enhanced thermal characteristics of high-density polyethylene reinforced with Al (OH)3/Pb2O3 for radioactive waste management Radiat. Phys. Chem. 101 218-288
[68]  
Bayer L(2021)3D printing of radiation shielding polyethylene composites filled with Martian regolith simulant using fused filament fabrication Radiat. Phys. Chem. 453 48-98
[69]  
Kahl S(2022)Photon mass attenuation coefficients of a silicon resin loaded with WO Radiat. Phys. Chem. 4 5717-1089
[70]  
Abualroos NJ(2014), PbO, and Bi Ann. Nucl. Energy 9 777956-472