Multiple Wavelengths Texture Measurement Using Angle Dispersive Neutron Diffraction at WOMBAT

IF 1.3 Q3 INSTRUMENTS & INSTRUMENTATION
Pingguang Xu, K. Liss
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引用次数: 1

Abstract

In contrast to conventional angle dispersive neutron diffractometers with a single-tube detector or a small-size linear position-sensitive detector, the WOMBAT diffractometer of the Australian Nuclear Science and Technology Organisation (ANSTO) is equipped with a large-area curved position-sensitive detector, spanning 120° for the scattering angle 2θ and 15° for the azimuth η, respectively. Here, WOMBAT was employed in establishing a texture measurement environment for complex textured samples, through measuring neutron diffractograms at two selected wavelengths on a typical reference sample of martensite–austenite multilayered steel sheet. All neutron patterns were simultaneously Rietveld analyzed using the software, Materials Analysis Using Diffraction (MAUD). The shorter wavelength (λ1 = 1.54 Å, k1 = 4.08 Å−1) enabled collecting the martensite reflections α-110, α-200, α-211, α-220, α-310, and α-222, as well as the austenite peaks γ-111, γ-200, γ-220, γ-311, γ-222, and γ-331 simultaneously, by pre-setting the detector range to 2Θ = 30~150°. The longer wavelength (λ2 = 2.41 Å, k2 = 2.61 Å−1) enabled separating the overlapping strong martensite α-110 and austenite γ-111 Laue–Bragg interferences more reliably. Moreover, the detector panel division along the vertical direction has a good stereographic coverage in the azimuthal angle η,. Such a combination of multiple-wavelength neutron diffraction combined with simultaneous Rietveld texture analysis was confirmed as being very valuable for realizing high precision measurements for complex textured samples at an orientation distribution graticule of 5°, and in a much shorter beam time than the conventional angle dispersive method.
利用角色散中子衍射测量袋熊多波长织构
与带有单管探测器或小型线性位置敏感探测器的传统角度色散中子衍射仪不同,澳大利亚核科学技术组织(ANSTO)的WOMBAT衍射仪配备了一个大面积弯曲位置敏感探测器,散射角2θ分别为120°,方位角η分别为15°。在这里,WOMBAT被用于建立复杂织构样品的织构测量环境,通过在马氏体-奥氏体多层钢板的典型参考样品上测量两个选定波长的中子衍射图。使用软件“衍射材料分析”(MAUD)同时对所有中子模式进行了Rietveld分析。较短的波长(λ1=1.54Å,k1=4.08Å−1)可以通过将探测器范围预先设置为2θ=30~150°,同时收集马氏体反射α-110、α-200、α-220、α-310和α-222,以及奥氏体峰值γ-111、γ-200、γ-220、γ-311、γ-222和γ-331。更长的波长(λ2=2.41Å,k2=2.61Å−1)能够更可靠地分离重叠的强马氏体α-110和奥氏体γ-111 Laue–Bragg干涉。此外,沿垂直方向划分的探测器面板在方位角η、,。这种多波长中子衍射与同时Rietveld织构分析相结合的方法被证实对于在5°的取向分布网格下实现复杂织构样品的高精度测量非常有价值,并且比传统的角度色散方法的光束时间短得多。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
2.80
自引率
28.60%
发文量
27
审稿时长
11 weeks
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