Department of Imaging and Applied Physics, Curtin University, GPO Box U1987, Perth, WA 6845 Australia; School of Physics, Universiti Sains Malaysia, 11800 Penang, Malaysia.
Mater Sci Eng C Mater Biol Appl. 2013 Dec 1;33(8):4952-7. doi: 10.1016/j.msec.2013.08.023. Epub 2013 Aug 28.
Characteristics of X-ray transmissions were investigated for epoxy composites filled with 2-10 vol% WO3 loadings using synchrotron X-ray absorption spectroscopy (XAS) at 10-40 keV. The results obtained were used to determine the equivalent X-ray energies for the operating X-ray tube voltages of mammography and radiology machines. The results confirmed the superior attenuation ability of nano-sized WO3-epoxy composites in the energy range of 10-25 keV when compared to their micro-sized counterparts. However, at higher synchrotron radiation energies (i.e., 30-40 keV), the X-ray transmission characteristics were similar with no apparent size effect for both nano-sized and micro-sized WO3-epoxy composites. The equivalent X-ray energies for the operating X-ray tube voltages of the mammography unit (25-49 kV) were in the range of 15-25 keV. Similarly, for a radiology unit operating at 40-60 kV, the equivalent energy range was 25-40 keV, and for operating voltages greater than 60 kV (i.e., 70-100 kV), the equivalent energy was in excess of 40 keV. The mechanical properties of epoxy composites increased initially with an increase in the filler loading but a further increase in the WO3 loading resulted in deterioration of flexural strength, modulus and hardness.
采用同步辐射 X 射线吸收光谱法(XAS)在 10-40keV 下研究了填充有 2-10vol%WO3 负载量的环氧复合材料的 X 射线透射特性。利用所获得的结果确定了乳腺摄影和放射学机器的工作 X 射线管电压的等效 X 射线能量。结果证实,与微米级相比,纳米级 WO3-环氧复合材料在 10-25keV 的能量范围内具有更好的衰减能力。然而,在更高的同步辐射能量(即 30-40keV)下,纳米级和微米级 WO3-环氧复合材料的 X 射线透射特性相似,没有明显的尺寸效应。乳腺摄影设备(25-49kV)工作 X 射线管电压的等效 X 射线能量在 15-25keV 的范围内。同样,对于在 40-60kV 下运行的放射学设备,等效能量范围为 25-40keV,而对于工作电压大于 60kV(即 70-100kV),等效能量超过 40keV。随着填充剂负载量的增加,环氧复合材料的机械性能最初会增加,但 WO3 负载量的进一步增加会导致弯曲强度、模量和硬度的恶化。