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河北邢窑和定窑唐三彩烧制工艺的无损分析
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作者 陈殿 侯禹存 +3 位作者 黄信 李融武 潘秋丽 程琳 《光谱学与光谱分析》 SCIE EI CAS CSCD 北大核心 2024年第3期675-680,共6页
研究了河北邢窑和定窑发掘出土的唐三彩样品的化学成分和物相结构。结果表明,邢窑和定窑唐三彩的胎体有不同的来源或配方;值得注意的是,邢窑唐三彩XY4样品中,存在同时施钙釉和铅釉的工艺。另一方面,邢窑和定窑唐三彩的高铅釉中,普遍存在... 研究了河北邢窑和定窑发掘出土的唐三彩样品的化学成分和物相结构。结果表明,邢窑和定窑唐三彩的胎体有不同的来源或配方;值得注意的是,邢窑唐三彩XY4样品中,存在同时施钙釉和铅釉的工艺。另一方面,邢窑和定窑唐三彩的高铅釉中,普遍存在α-石英和微量钙长石的晶相;其中定窑黄釉中存在微量莫来石(3Al_(2)O_(3)·2SiO_(2))晶相和α-Fe_(2)O_(3)晶相;定窑绿釉中存在微量的Pb_(8)Cu(Si_(2)O_(7))晶相;邢窑白釉中存在少量的钾长石(KAlSi_(3)O_(8))晶相。这些微量的晶相或是釉料本身所携带或在烧制或冷却过程中发生的复杂的物理化学变化所形成的,对了解早期唐三彩的烧制工艺和真伪识别以及墓葬出土唐三彩产地的研究具有很重要的意义。 展开更多
关键词 毛细管X光透镜 微束X射线荧光 X射线衍射 唐三彩
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基于X射线成像原理的电缆缓冲层缺陷的可视化检测技术对比研究
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作者 邱玮 章宇聪 +3 位作者 谢亿 曹先慧 李湘珺 胡俊 《电气应用》 2024年第8期37-43,共7页
近年来,高压电缆缓冲层烧蚀缺陷导致电缆故障问题频发,如何有效地对缓冲层缺陷进行检测引起了行业内的广泛关注。基于缓冲层缺陷与其相邻层间的密度差异,分别对X射线数字成像技术和计算机断层成像技术开展了检测参数研究,对比分析了两... 近年来,高压电缆缓冲层烧蚀缺陷导致电缆故障问题频发,如何有效地对缓冲层缺陷进行检测引起了行业内的广泛关注。基于缓冲层缺陷与其相邻层间的密度差异,分别对X射线数字成像技术和计算机断层成像技术开展了检测参数研究,对比分析了两种方法对不同类型缺陷的检出有效性及在不同干扰下的检测效果。结果表明,计算机断层成像技术在检测准确度和抗干扰性优于X射线数字成像技术,但在检测的现场适用性方面有局限。研究给出两种检测技术的最佳检测参数及各自的优缺点,为后续高压电缆的缓冲层缺陷可视化检测提供了有益的参考。 展开更多
关键词 高压电缆 缓冲层缺陷 X射线数字成像 计算机断层成像
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孔形对基于硅微通道阵列的CsI:Tl闪烁屏性能影响的模拟
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作者 赵子锋 王国政 +3 位作者 郝子恒 张妮 戈钧 杨继凯 《强激光与粒子束》 CAS CSCD 北大核心 2024年第6期112-119,共8页
使用Geant4程序模拟了微孔形状对基于硅微通道阵列的CsI:Tl像素化X射线闪烁屏性能的影响。模拟的闪烁屏性能参数包括:闪烁光子数、底光输出、传输效率、n次全反射占比、调制传递函数(MTF)与空间分辨率的关系。模拟过程中设定微孔的形状... 使用Geant4程序模拟了微孔形状对基于硅微通道阵列的CsI:Tl像素化X射线闪烁屏性能的影响。模拟的闪烁屏性能参数包括:闪烁光子数、底光输出、传输效率、n次全反射占比、调制传递函数(MTF)与空间分辨率的关系。模拟过程中设定微孔的形状分别为方形和圆形,两种孔形的微通道阵列周期相同,均为10μm。模拟结果显示:方形微孔的闪烁光子数优于圆形微孔,闪烁光子数正比于微孔横截面积;闪烁屏厚度小于400μm时,方形微孔的底光输出优于圆形微孔,厚度大于400μm时,圆形微孔的底光输出优于方形微孔;圆形微孔的传输效率优于方形微孔;厚度为40和200μm的方形微孔闪烁屏空间分辨率优于相同厚度的圆形微孔闪烁屏。制备了方形微孔的CsI:Tl闪烁屏样品,测量了其MTF与空间分辨率的关系,当MTF为0.1时,空间分辨率为22.6 lp/mm。 展开更多
关键词 GEANT4 闪烁屏 CsI:Tl 调制传递函数 硅微通道阵列
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基于直线扫描的引信钢球分层成像检测算法
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作者 吉泓洁 陈平 +2 位作者 赵耀霞 张永伟 朱勋 《兵器装备工程学报》 CAS CSCD 北大核心 2024年第3期247-252,322,共7页
针对现有的火药引信装配正确性检测方法中存在的无法准确检测遮挡严重的零件的问题,提出了引信中钢球分层成像定位检测算法。将X射线源直线移动扫描待测物体形成多个虚拟的小孔径,结合光学合成孔径原理对所有小孔径进行合成,将合成的虚... 针对现有的火药引信装配正确性检测方法中存在的无法准确检测遮挡严重的零件的问题,提出了引信中钢球分层成像定位检测算法。将X射线源直线移动扫描待测物体形成多个虚拟的小孔径,结合光学合成孔径原理对所有小孔径进行合成,将合成的虚拟大孔径成像在不同距离深度的平面上,实现对目标的定位和检测。试验结果表明:所提算法能够在火药引信钢球相互重叠的情况下利用深度信息进行分层成像,提供待测物体的深度信息,能够对不同层次的目标进行检测,确定待检测物体的数量,解决了现有的检测方法在检测过程中出现的漏检问题。 展开更多
关键词 直线扫描 X射线 钢球 分层成像 深度信息
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Atmospheric transmission algorithm for pulsed X-rays from high-altitude nuclear detonations based on scattering correction
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作者 Ding-Han Zhu Xiong Zhang +3 位作者 Xiao-Qiang Li Peng Li Yan-Bin Wang Shuang Zhang 《Nuclear Science and Techniques》 SCIE EI CAS CSCD 2024年第3期40-52,共13页
In high-altitude nuclear detonations,the proportion of pulsed X-ray energy can exceed 70%,making it a specific monitoring signal for such events.These pulsed X-rays can be captured using a satellite-borne X-ray detect... In high-altitude nuclear detonations,the proportion of pulsed X-ray energy can exceed 70%,making it a specific monitoring signal for such events.These pulsed X-rays can be captured using a satellite-borne X-ray detector following atmospheric transmission.To quantitatively analyze the effects of different satellite detection altitudes,burst heights,and transmission angles on the physical processes of X-ray transport and energy fluence,we developed an atmospheric transmission algorithm for pulsed X-rays from high-altitude nuclear detonations based on scattering correction.The proposed method is an improvement over the traditional analytical method that only computes direct-transmission X-rays.The traditional analytical method exhibits a maximum relative error of 67.79% compared with the Monte Carlo method.Our improved method reduces this error to within 10% under the same conditions,even reaching 1% in certain scenarios.Moreover,its computation time is 48,000 times faster than that of the Monte Carlo method.These results have important theoretical significance and engineering application value for designing satellite-borne nuclear detonation pulsed X-ray detectors,inverting nuclear detonation source terms,and assessing ionospheric effects. 展开更多
关键词 High-altitude nuclear detonation Atmospheric transmission Pulsed X-rays Scattering correction Analytical method Monte Carlo method
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FL-Online:An x-ray crystallographic web-server for atomic-scale structure analysis of biomolecule
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作者 王宾堂 牛彤欣 +1 位作者 范海福 丁玮 《Chinese Physics B》 SCIE EI CAS CSCD 2024年第7期37-42,共6页
FL-Online(http://fanlab.ac.cn) is an out-of-box modern web service featuring a user-friendly interface and simplified parameters, providing academic users with access to a series of online programs for biomolecular cr... FL-Online(http://fanlab.ac.cn) is an out-of-box modern web service featuring a user-friendly interface and simplified parameters, providing academic users with access to a series of online programs for biomolecular crystallography, including SAPI-online, OASIS-online, C-IPCAS-online and a series of upcoming software releases. Meanwhile, it is a highly scalable and maintainable web application framework that provides a powerful and flexible solution for academic web development needs. All the codes are open-source under MIT licenses in GitHub. 展开更多
关键词 graphical web service OASIS IPCAS direct methods protein crystallography
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High-precision X-ray polarimeter based on channel-cut crystals
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作者 Shang-Yu Si Zhong-Liang Li +8 位作者 Wen-Hong Jia Lian Xue Hong-Xin Luo Jian-Cai Xu Bai-Fei Shen Lin-Gang Zhang Liang-Liang Ji Yu-Xin Leng Ren-Zhong Tai 《Nuclear Science and Techniques》 SCIE EI CAS CSCD 2024年第3期30-39,共10页
We report on using synthetic silicon for a high-precision X-ray polarimeter comprising a polarizer and an analyzer,each based on a monolithic channel-cut crystal used at multiple Brewster reflections with a Bragg angl... We report on using synthetic silicon for a high-precision X-ray polarimeter comprising a polarizer and an analyzer,each based on a monolithic channel-cut crystal used at multiple Brewster reflections with a Bragg angle very close to 45°.Experiments were performed at the BL09B bending magnet beamline of the Shanghai Synchrotron Radiation Facility using a Si(800)crystal at an X-ray energy of 12.914 keV.A polarization purity of 8.4×10^(-9)was measured.This result is encouraging,as the measured polarization purity is the best-reported value for the bending magnet source.Notably,this is the firstly systematic study on the hard X-ray polarimeter in China,which is crucial for exploring new physics,such as verifying vacuum birefringence. 展开更多
关键词 X-ray polarimeter Vacuum birefringence Synchrotron radiation Channel-cut crystal
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Two-dimensional particle-in-cell modeling of blow-off impulse by X-ray irradiation
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作者 Ruibo Li Jin-Long Jiao +3 位作者 Hui Luo Dezhi Zhang Dengwang Wang Kai Wang 《Nuclear Science and Techniques》 SCIE EI CAS CSCD 2024年第3期53-69,共17页
Space objects such as spacecraft or missiles may be exposed to intense X-rays in outer space,leading to severe damage.The reinforcement of these objects to reduce the damage caused by X-ray irradiation is a significan... Space objects such as spacecraft or missiles may be exposed to intense X-rays in outer space,leading to severe damage.The reinforcement of these objects to reduce the damage caused by X-ray irradiation is a significant concern.The blow-off impulse(BOI)is a crucial physical quantity for investigating material damage induced by X-ray irradiation.However,the accurate calculation of BOI is challenging,particularly for large deformations of materials with complex configurations.In this study,we develop a novel two-dimensional particle-in-cell code,Xablation2D,to calculate BOIs under far-field X-ray irradiation.This significantly reduces the dependence of the numerical simulation on the grid shape.The reliability of this code is verified by simulation results from open-source codes,and the calculated BOIs are consistent with the experimental and analytical results. 展开更多
关键词 X-ray irradiation Energy deposition Blow-off impulse Particle in cells
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Fast X-ray imaging beamline at SSRF
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作者 Ke Li Hong-Lan Xie +5 位作者 Ya-Nan Fu Fei-Xiang Wang Guo-Hao Du Jian-Feng ji Biao Deng Ti-Qiao Xiao 《Nuclear Science and Techniques》 SCIE EI CAS CSCD 2024年第9期68-81,共14页
The fast X-ray imaging beamline(BL16U2)at Shanghai Synchrotron Radiation Facility(SSRF)is a new beamline that provides X-ray micro-imaging capabilities across a wide range of time scales,spanning from 100 ps toμs and... The fast X-ray imaging beamline(BL16U2)at Shanghai Synchrotron Radiation Facility(SSRF)is a new beamline that provides X-ray micro-imaging capabilities across a wide range of time scales,spanning from 100 ps toμs and ms.This beamline has been specifically designed to facilitate the investigation of a wide range of rapid phenomena,such as the deformation and failure of materials subjected to intense dynamic loads.In addition,it enables the study of high-pressure and high-speed fuel spray processes in automotive engines.The light source of this beamline is a cryogenic permanent magnet undulator(CPMU)that is cooled by liquid nitrogen.This CPMU can generate X-ray photons within an energy range of 8.7-30 keV.The beamline offers two modes of operation:monochromatic beam mode with a liquid nitrogen-cooled double-crystal monochromator(DCM)and pink beam mode with the first crystal of the DCM out of the beam path.Four X-ray imaging methods were implemented in BL16U2:single-pulse ultrafast X-ray imaging,microsecond-resolved X-ray dynamic imaging,millisecond-resolved X-ray dynamic micro-CT,and high-resolution quantitative micro-CT.Furthermore,BL16U2 is equipped with various in situ impact loading systems,such as a split Hopkinson bar system,light gas gun,and fuel spray chamber.Following the completion of the final commissioning in 2021 and subsequent trial operations in 2022,the beamline has been officially available to users from 2023. 展开更多
关键词 Multiple time-scale X ray imaging Single-pulse X ray imaging Dynamic 2D imaging Dynamic micro-CT
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Two Monte Carlo-based simulators for imaging-system modeling and projection simulation of flat-panel X-ray source
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作者 Meng-Ke Qi Ting He +7 位作者 Yi-Wen Zhou Jing Kang Zeng-Xiang Pan Song Kang Wang-Jiang Wu Jun Chen Ling-Hong Zhou Yuan Xu 《Nuclear Science and Techniques》 SCIE EI CAS CSCD 2024年第7期31-46,共16页
The advantages of a flat-panel X-ray source(FPXS)make it a promising candidate for imaging applications.Accurate imaging-system modeling and projection simulation are critical for analyzing imaging performance and res... The advantages of a flat-panel X-ray source(FPXS)make it a promising candidate for imaging applications.Accurate imaging-system modeling and projection simulation are critical for analyzing imaging performance and resolving overlapping projection issues in FPXS.The conventional analytical ray-tracing approach is limited by the number of patterns and is not applicable to FPXS-projection calculations.However,the computation time of Monte Carlo(MC)simulation is independent of the size of the patterned arrays in FPXS.This study proposes two high-efficiency MC projection simulators for FPXS:a graphics processing unit(GPU)-based phase-space sampling MC(gPSMC)simulator and GPU-based fluence sampling MC(gFSMC)simulator.The two simulators comprise three components:imaging-system modeling,photon initialization,and physical-interaction simulations in the phantom.Imaging-system modeling was performed by modeling the FPXS,imaging geometry,and detector.The gPSMC simulator samples the initial photons from the phase space,whereas the gFSMC simulator performs photon initialization from the calculated energy spectrum and fluence map.The entire process of photon interaction with the geometry and arrival at the detector was simulated in parallel using multiple GPU kernels,and projections based on the two simulators were calculated.The accuracies of the two simulators were evaluated by comparing them with the conventional analytical ray-tracing approach and acquired projections,and the efficiencies were evaluated by comparing the computation time.The results of simulated and realistic experiments illustrate the accuracy and efficiency of the proposed gPSMC and gFSMC simulators in the projection calculation of various phantoms. 展开更多
关键词 Flat-panel X-ray source(FPXS) Imaging-system modeling Projection simulation Monte Carlo-based simulators
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High-precision X-ray characterization for basic materials in modern high-end integrated circuit
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作者 Weiran Zhao Qiuqi Mo +3 位作者 Li Zheng Zhongliang Li Xiaowei Zhang Yuehui Yu 《Journal of Semiconductors》 EI CAS CSCD 2024年第7期12-24,共13页
Semiconductor materials exemplify humanity's unwavering pursuit of enhanced performance,efficiency,and functionality in electronic devices.From its early iterations to the advanced variants of today,this field has... Semiconductor materials exemplify humanity's unwavering pursuit of enhanced performance,efficiency,and functionality in electronic devices.From its early iterations to the advanced variants of today,this field has undergone an extraordinary evolution.As the reliability requirements of integrated circuits continue to increase,the industry is placing greater emphasis on the crystal qualities.Consequently,conducting a range of characterization tests on the crystals has become necessary.This paper will examine the correlation between crystal quality,device performance,and production yield,emphasizing the significance of crystal characterization tests and the important role of high-precision synchrotron radiation X-ray topography characterization in semiconductor analysis.Finally,we will cover the specific applications of synchrotron radiation characterization in the development of semiconductor materials. 展开更多
关键词 X-ray topography synchrotron radiation semiconductor materials crystal defects
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Model-driven CT reconstruction algorithm for nano-resolution x-ray phase contrast imaging
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作者 谭雨航 蔡学宝 +5 位作者 杨杰成 苏婷 郑海荣 梁栋 朱佩平 葛永帅 《Chinese Physics B》 SCIE EI CAS CSCD 2024年第7期646-650,共5页
The low-density imaging performance of a zone plate-based nano-resolution hard x-ray computed tomography(CT)system can be significantly improved by incorporating a grating-based Lau interferometer. Due to the diffract... The low-density imaging performance of a zone plate-based nano-resolution hard x-ray computed tomography(CT)system can be significantly improved by incorporating a grating-based Lau interferometer. Due to the diffraction, however,the acquired nano-resolution phase signal may suffer splitting problem, which impedes the direct reconstruction of phase contrast CT(nPCT) images. To overcome, a new model-driven nPCT image reconstruction algorithm is developed in this study. In it, the diffraction procedure is mathematically modeled into a matrix B, from which the projections without signal splitting can be generated invertedly. Furthermore, a penalized weighted least-square model with total variation(PWLSTV) is employed to denoise these projections, from which nPCT images with high accuracy are directly reconstructed.Numerical experiments demonstrate that this new algorithm is able to work with phase projections having any splitting distances. Moreover, results also reveal that nPCT images of higher signal-to-noise-ratio(SNR) could be reconstructed from projections having larger splitting distances. In summary, a novel model-driven nPCT image reconstruction algorithm with high accuracy and robustness is verified for the Lau interferometer-based hard x-ray nano-resolution phase contrast imaging. 展开更多
关键词 splitting phase image reconstruction algorithm grating interferometer
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The hard X-ray nanoprobe beamline at the SSRF
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作者 Yan He Hui Jiang +6 位作者 Dong-Xu Liang Zhi-Sen Jiang Huai-Na Yu Hua Wang Cheng-Wen Mao Jia-Nan Xie Ai-Guo Li 《Nuclear Science and Techniques》 SCIE EI CAS CSCD 2024年第7期79-88,共10页
The hard X-ray nanoprobe beamline BL13U is a phase-Ⅱ beamline project at the Shanghai Synchrotron Radiation Facility.The beamline aims to enable comprehensive experiments at high spatial resolutions ranging from 50 t... The hard X-ray nanoprobe beamline BL13U is a phase-Ⅱ beamline project at the Shanghai Synchrotron Radiation Facility.The beamline aims to enable comprehensive experiments at high spatial resolutions ranging from 50 to 10 nm. The X-ray energy range of the beamline, 5–25 keV, can detect most elements in the periodic table. Two operating modes were designed to accommodate the experimental requirements of high-energy resolution or high photon flux, respectively. X-ray nanofluorescence, nanodiffraction, and coherent diffraction imaging are developed as the main experimental techniques for BL13U. This paper describes the beamline optics, end station configurations, experimental methods under development, and preliminary test results. This comprehensive overview aims to provide a clear understanding of the beamline capabilities and potential applications. 展开更多
关键词 Shanghai synchrotron radiation facility Hard X-ray nanoprobe X-ray nanofocusing
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Multi-Scale X-Ray Imaging Technologies for Rechargeable Batteries
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作者 Zihan Xu Hanwen An Jiajun Wang 《Chinese Physics Letters》 SCIE EI CAS CSCD 2024年第8期107-120,共14页
The rapid advancement in electric vehicles and electrochemical energy storage technology has raised the demands placed on rechargeable batteries.It is essential to comprehend the operational principles and degradation... The rapid advancement in electric vehicles and electrochemical energy storage technology has raised the demands placed on rechargeable batteries.It is essential to comprehend the operational principles and degradation mechanisms of batteries across multiple scales to propel the research on rechargeable batteries for the next generation forward.Microstructure,phase information,and lattice of energy materials in both two dimensions and three dimensions can be intuitively obtained through the utilization of x-ray imaging techniques.Additionally,x-ray imaging technology is increasingly gaining attention due to its non-destructive nature and high penetrative capability,enabling in situ experiments and multi-scale spatial resolution.In this review,we initially overview the basic principles and characteristics of several key x-ray imaging technologies.Each x-ray imaging technology is tailored to specific application scenarios.Furthermore,examples of multi-scale implementations of x-ray imaging technologies in the field of rechargeable batteries are discussed.This review is anticipated to augment the comprehension of readers for x-ray imaging techniques as well as to stimulate the development of novel concepts and approaches in rechargeable battery research. 展开更多
关键词 BATTERY DIMENSIONS CHARGE
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扁平样品体系的同步辐射层析成像检测技术
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作者 张迪菲 姚玉东 江怀东 《自然杂志》 CAS 2024年第3期231-237,共7页
利用同步辐射X射线高穿透性、高亮度等特点,结合三维重建方法,可以实现样品的三维无损成像,该技术在生物、材料、化学等领域发挥着重要作用。针对扁平样品体系,计算机断层成像(computed tomography,CT)这种常规的三维成像方法,由于其高... 利用同步辐射X射线高穿透性、高亮度等特点,结合三维重建方法,可以实现样品的三维无损成像,该技术在生物、材料、化学等领域发挥着重要作用。针对扁平样品体系,计算机断层成像(computed tomography,CT)这种常规的三维成像方法,由于其高角度信息缺失,无法实现兼顾尺寸与分辨率的无损高精度成像。近年来再次发展起来的计算机层析成像(computed laminography,CL)可以满足对扁平样品的高精度三维成像的需求。然而,当前的三维重建方法需要足够多的投影数目才能实现高质量重建。文章在已有的三维重建算法的基础上,发展了一种针对CL的傅里叶迭代重建算法(laminography Fourier iterative algorithm,LFIA),在投影角度有限的情况下,利用投影之间的相关信息恢复缺失信息,从而实现更高的重建分辨率,并通过模拟与实验验证算法的可行性。 展开更多
关键词 同步辐射X射线成像 计算机层析成像 傅里叶迭代算法
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X射线荧光光谱法测定铝合金中的元素含量
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作者 王椿曦 莫境山 +3 位作者 熊正烨 张泽锋 王露燕 曾才兴 《轻合金加工技术》 CAS 2024年第4期55-59,共5页
利用X射线荧光光谱特征峰强度与元素含量之间的关系,可确定铝合金中金属元素种类和含量。本试验测量了系列铝合金标准样品(已知金属元素成分含量)X射线荧光光谱(XRF),根据金属元素特征谱线绘制XRF特征峰值与元素含量线性关系曲线。结果... 利用X射线荧光光谱特征峰强度与元素含量之间的关系,可确定铝合金中金属元素种类和含量。本试验测量了系列铝合金标准样品(已知金属元素成分含量)X射线荧光光谱(XRF),根据金属元素特征谱线绘制XRF特征峰值与元素含量线性关系曲线。结果表明,使用XRF法检测铝合金中的元素结果准确,灵敏度高,Cu元素质量分数检出限可达3×10^(-6),灵敏度相对低的Ti元素质量分数检出限也可达16×10^(-6);用XRF法检测了散热铝合金样品中各金属元素含量,其中Cu、Zn的测量结果与激光烧蚀火花诱导击穿光谱法所测结果一致。 展开更多
关键词 X射线荧光光谱 铝合金 金属元素 定量分析
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HEPS首台大光斑紧凑型精密可调白光光阑完成在线安装
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《光源与照明》 2024年第7期1-1,共1页
近日,高能同步辐射光源(HEPS)硬X射线成像线站的大光斑紧凑型精密可调白光光阑完成了在线安装,该光阑也是我国首台自主研制的超大型同步辐射白光光斑精密调制设备。HEPS硬X射线成像线站是高能同步辐射光源首期三条长光束线之一,该线站... 近日,高能同步辐射光源(HEPS)硬X射线成像线站的大光斑紧凑型精密可调白光光阑完成了在线安装,该光阑也是我国首台自主研制的超大型同步辐射白光光斑精密调制设备。HEPS硬X射线成像线站是高能同步辐射光源首期三条长光束线之一,该线站为插入件引出线站,装备了常规扭摆器、低温波荡器和芒果扭摆器三类不同性能插入件,具备高灵敏度、强穿透、大视场等优点,以硬X射线同轴相位衬度成像和衍射衬度成像实验方法为主,对工程材料和部件、生物医学、古生物学等研究具有重要意义。 展开更多
关键词 相位衬度成像 同步辐射光源 扭摆器 引出线 插入件 成像实验 低温波荡器 生物医学
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基于目标检测的陶封芯片焊缝缺陷X射线检测方法
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作者 顾杰斐 《电子与封装》 2024年第9期100-100,共1页
芯片的封装过程极其复杂且对精度要求极高,在焊接过程中保证金属焊料填满基板和保护封盖之间的缝隙较为困难,容易出现焊缝缺陷,对芯片的质量产生严重影响,因此,对封装完成的芯片进行焊缝缺陷检测以保证芯片的可靠性极为重要。然而,陶封... 芯片的封装过程极其复杂且对精度要求极高,在焊接过程中保证金属焊料填满基板和保护封盖之间的缝隙较为困难,容易出现焊缝缺陷,对芯片的质量产生严重影响,因此,对封装完成的芯片进行焊缝缺陷检测以保证芯片的可靠性极为重要。然而,陶封芯片的焊缝缺陷大小不一、形状多变,导致传统检测方法的精度和效率不高。 展开更多
关键词 焊缝缺陷 X射线检测 传统检测方法 目标检测 封装过程 可靠性 芯片
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基于卷积神经网络的安检X光图像违禁品多标签识别
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作者 杨登杰 江式坤 周亮 《工业控制计算机》 2024年第5期96-97,共2页
在安全检查工作中,违禁品的检测与识别仍然过度依赖于安检员的视觉经验。如何自动判别出X光图像中存在的常见违禁品,进而辅助安检员进行决策,成为安检领域的一个亟待解决的问题。基于深度学习技术研究安检X光图像中的违禁品多标签识别... 在安全检查工作中,违禁品的检测与识别仍然过度依赖于安检员的视觉经验。如何自动判别出X光图像中存在的常见违禁品,进而辅助安检员进行决策,成为安检领域的一个亟待解决的问题。基于深度学习技术研究安检X光图像中的违禁品多标签识别方法。通过引入multi-hot向量标注法对安检X光数据集进行标注,迁移训练Darknet-53卷积神经网络实现对X光图像中违禁品的类别判定。实验结果表明,安检X光图像违禁品多标签识别平均精度达到了98%以上,满足现实安检场景下的应用需求。 展开更多
关键词 卷积神经网络 安检X光图像 违禁品 多标签识别
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利用X射线荧光光谱法检测土壤中重金属的准确性研究
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作者 王万萍 《黑龙江环境通报》 2024年第11期151-153,共3页
随着工业化和城市化进程的加快,土壤污染问题日益显现,尤其是重金属污染问题引起了广泛关注,重金属污染对生态环境和人类健康产生了严重的负面影响,因此对土壤中重金属的检测与评估显得尤为重要。X射线荧光光谱法(XRF)作为一种现代高效... 随着工业化和城市化进程的加快,土壤污染问题日益显现,尤其是重金属污染问题引起了广泛关注,重金属污染对生态环境和人类健康产生了严重的负面影响,因此对土壤中重金属的检测与评估显得尤为重要。X射线荧光光谱法(XRF)作为一种现代高效的非破坏性分析手段,具有检测速度快、准确性高、样品消耗少等优点,已被广泛应用于环境科学、地球科学、考古学等领域。本文旨在探讨X射线荧光光谱法在环境保护领域检测土壤中重金属污染的准确性和可行性,通过对XRF技术进行详细研究及对比传统分析方法,旨在为环保监测和土壤治理工作提供一种可靠的科学方法。 展开更多
关键词 X射线荧光光谱法 检测土壤 重金属 准确性
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