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High-energy x-ray and neutron modeling and digital imaging for nondestructive testing applications

机译:用于非破坏性测试应用的高能X射线和中子建模和数字成像

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Adapting amorphous silicon imagers to the rigors of nondestructive evaluation has required the creation of new tools and techniques for successful detection of flaws in dense objects. At Los Alamos National Laboratory, extensive use of digital imagers and a desire to replace film with digital systems has led to additional research into modeling and simulation with an ultimate goal of improved techniques for using these imagers. The imagers have been used with varying success at x-ray energies ranging from 70 keV to 20 MeV, as well as with a variety of neutron energies at the Los Alamos Neutron Science Center (LANSCE). To simulate these diverse situations, a new version of the Monte Carlo Neutron/Photon (MCNP) simulation package, developed at Los Alamos, is employed (MCNP-X). The rapid simulation of various setups allows the rapid development of techniques without extensive and costly experimentation or test blocks. The simulations cover digital radiography and computed tomography unique to amorphous silicon imagers, and provides additional information concerning the transition from film to digital imaging. Specifically, techniques have been developed to use the order of magnitude speed advantage of amorphous silicon detectors to provide density resolution in ways not possible with film. Also, the viability of amorphous silicon detectors at extremely high energies (1-20 MeV) is simulated and tested experimentally.
机译:将非晶硅成像仪适应非破坏性评估的严谨,所以需要创建新的工具和技术,以便成功地检测密集物体中的缺陷。在Los Alamos国家实验室,广泛使用数字成像仪和用数字系统取代电影的愿望导致了额外的建模和仿真研究,具有改进的使用这些成像仪的技术的最终目标。成像仪已被用于不同的成功,在X射线能量范围为70 kev到20 meV,以及Los Alamos中子科学中心(Lansce)的各种中子能量。为了模拟这些不同的情况,采用了在LOS Alamos开发的蒙特卡罗中子/光子(MCNP)仿真包的新版本(MCNP-X)。各种设置的快速模拟允许快速开发技术,无需广泛且昂贵的实验或测试块。模拟涵盖非晶硅成像仪独有的数字射线照相和计算机断层扫描,并提供了关于从胶片到数字成像的过渡的附加信息。具体地,已经开发出技术以使用非晶硅检测器的幅度速度优势顺序,以通过薄膜的方式提供密度分辨率。而且,在实验上模拟并测试了非晶硅探测器在极高的能量(1-20meV)下的可生存能力。

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