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首页> 外文期刊>Transactions of the American nuclear society >Materials Characterization using the Facilities of the Center for Synchrotron Radiation Research and Instrumentation (CSRRI), a NSUF Partner Facility
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Materials Characterization using the Facilities of the Center for Synchrotron Radiation Research and Instrumentation (CSRRI), a NSUF Partner Facility

机译:使用NSUF伙伴设施同步辐射研究与仪器中心(CSRRI)的设施进行材料表征

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摘要

Advanced nuclear energy systems are envisioned to operate at high temperatures, high burn-up, harsh neutron irradiation, and corrosive environments. New materials and nuclear fuels with improved performance, safety and reliability are needed for the increasingly demanding operating conditions. The fundamental challenge in developing new materials with improved irradiation, temperature, and corrosion resistance is to understand and control chemical and physical phenomena in complex systems over multiple time and length scales. Solving these scientific and technical challenges will require an integrated approach of all available computational and experimental capabilities. This talk will focus on the application of synchrotron radiation techniques to characterize materials of interest to nuclear material science at the facilities operated by the Center For Synchrotron Radiation Research and Instrumentation (CSRRI) at the Illinois Institute of Technology. The CSRRI is a partner facility with the U. S. Department of Energy's Nuclear Science User Facility (NSUF). Using the CSRRI facilities, such as the Materials Research Collaborative Access Team (MRCAT) beamline shown in Figure 1, we can study the materials science of irradiated and model materials to improve the understanding of the performance of materials in nuclear reactors.
机译:设想先进的核能系统将在高温,高燃耗,苛刻的中子辐照和腐蚀性环境下运行。对于日益苛刻的运行条件,需要性能,安全性和可靠性得到改善的新材料和核燃料。开发具有改善的耐辐射,耐高温和耐腐蚀性能的新材料的根本挑战是要了解和控制复杂系统在多个时间和长度范围内的化学和物理现象。解决这些科学和技术挑战将需要一种集成所有可用计算和实验能力的方法。演讲的重点是在伊利诺伊理工学院同步辐射研究与仪器中心(CSRRI)运营的设施中,应用同步加速器辐射技术表征核材料科学感兴趣的材料。 CSRRI是美国能源部核科学用户设施(NSUF)的合作伙伴设施。使用CSRRI设施,例如图1中所示的材料研究协作访问团队(MRCAT)束线,我们可以研究受辐照材料和模型材料的材料科学,以增进对核反应堆中材料性能的了解。

著录项

  • 来源
    《Transactions of the American nuclear society》 |2016年第6期|1240-1241|共2页
  • 作者

    Jeff Terry;

  • 作者单位

    Physics Department, Illinois Institute of Technology, 3101 S. Dearborn St., Chicago IL 60616;

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  • 原文格式 PDF
  • 正文语种 eng
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