MENUS-Materials engineering by neutron scattering.

K. An, A. Stoica, T. Huegle, Jiao Y. Y. Lin, V. Graves
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引用次数: 5

Abstract

Materials engineering by neutron scattering (MENUS) at the second target station will be a transformational high-flux, versatile, multiscale materials engineering diffraction beamline with unprecedented new capabilities for the study of complex materials and structures. It will support both fundamental and applied materials research in a broad range of fields. MENUS will combine unprecedented long-wavelength neutron flux and unique detector coverage to enable real-time studies of complex structural and functional materials under external stimuli. The incorporated small angle neutron scattering and transmission/imaging capabilities will extend its sensitivity to larger length scales and higher spatial resolution. Multimodal MENUS will provide crystallographic and microstructure data to the materials science and engineering community to understand lattice strain/phase transition/microstructure/texture evolution in three orthogonal directions in complex material systems under combined extreme applied conditions. The capabilities of MENUS will open new scientific opportunities and meet the research needs for science challenges to enable studies of a range of phenomena and answer the key questions in material design/exploration, advanced material processing, transformative manufacturing, and material operations of national impacts in our daily life.
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菜单-中子散射材料工程。
第二目标站的中子散射材料工程(MENUS)将成为一种具有前所未有的新能力的高通量、多用途、多尺度材料工程衍射光束线,用于复杂材料和结构的研究。它将在广泛的领域支持基础和应用材料的研究。菜单将结合前所未有的长波中子通量和独特的探测器覆盖范围,使外部刺激下复杂结构和功能材料的实时研究成为可能。集成的小角度中子散射和传输/成像能力将扩展其灵敏度到更大的长度尺度和更高的空间分辨率。多模态菜单将为材料科学和工程界提供晶体学和微观结构数据,以了解复合极端应用条件下复杂材料体系中晶格应变/相变/微观结构/织构的三个正交方向演变。菜单的能力将打开新的科学机会,满足科学挑战的研究需求,使一系列现象的研究成为可能,并回答材料设计/探索、先进材料加工、变革性制造和对我们日常生活产生国家影响的材料操作中的关键问题。
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