首页> 外文期刊>Journal of Applied Polymer Science >Mechanical and radiation shielding properties of SWCNT reinforced polymer/glass fiber fabric‐based nanocomposite containing different filler materials: A comparative study
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Mechanical and radiation shielding properties of SWCNT reinforced polymer/glass fiber fabric‐based nanocomposite containing different filler materials: A comparative study

机译:含不同填充材料的单壁碳纳米管增强聚合物/玻璃纤维织物基纳米复合材料的力学和辐射屏蔽性能的比较研究

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摘要

Abstract In this study, polymer/glass fiber fabric‐based nanocomposite plates were fabricated with 0.01–0.1 single‐walled carbon nanotubes (SWCNTs) and filler materials (barite, magnetite, and colemanite) using a hand layup process. Mechanical properties (e.g., tensile strength, flexural strength, and Charpy impact strength), thermal conductivity, and radiation shielding properties (e.g., gamma radiation and neutron radiation) of the specimens were determined. The results revealed that the specimens containing barite and magnetite managed to exhibit adequate mechanical properties (especially Charpy impact strength). Among different filler materials used, barite‐filled specimens outperformed colemanite and magnetite‐filled specimens in terms of mechanical properties. The mechanical performance of filler‐modified specimens can be further enhanced by adopting efficient dispersion techniques to disperse filler material and SWCNTs throughout the composite plates. The thermal conductivity of barite, magnetite, and colemanite‐filled specimens (with/without SWCNTs) increased by 30.56–60 as compared to specimens only containing SWCNTs and neat polymer, which avoids the accumulation of heat required for radiation shielding applications. Similar to thermal conductivity, specimens containing filler materials (with and without SWCNTs) provided higher gamma and neutron radiation shielding properties as compared to neat polymer‐ and SWCNT‐modified specimens. In the case of gamma and neutron radiation shielding, barite‐ and colemanite‐filled specimens provided better results, respectively.
机译:摘要 以0.01%–0.1%的单壁碳纳米管(SWCNT)和填充材料(重晶石、磁铁矿和钴铁矿)为材料,采用手糊工艺制备了聚合物/玻璃纤维织物基纳米复合板。测定试样的机械性能(如抗拉强度、弯曲强度和简支梁冲击强度)、导热性和辐射屏蔽性能(如伽马辐射和中子辐射)。结果表明,含有重晶石和磁铁矿的试样表现出足够的力学性能(尤其是简支梁冲击强度)。在所使用的不同填充材料中,重晶石填充试样在机械性能方面优于钴铁矿和磁铁矿填充试样。通过采用高效的分散技术将填料材料和单壁碳纳米管分散到整个复合板中,可以进一步提高填料改性试样的力学性能。与仅含有单壁碳纳米管和纯聚合物的试样相比,重晶石、磁铁矿和钴铁矿填充试样(有/无单壁碳纳米管)的导热系数提高了30.56%–60%,从而避免了辐射屏蔽应用所需的热量积聚。与导热性类似,与纯聚合物和SWCNT改性的试样相比,含有填充材料(有和没有SWCNTs)的试样具有更高的伽马和中子辐射屏蔽性能。在伽马辐射和中子辐射屏蔽的情况下,重晶石和钴铁矿填充的试样分别提供了更好的结果。

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