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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research >Optimisation and fabrication of a composite pyrolytic graphite monochromator for the Pelican instrument at the ANSTO OPAL reactor
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Optimisation and fabrication of a composite pyrolytic graphite monochromator for the Pelican instrument at the ANSTO OPAL reactor

机译:ANSTO OPAL反应堆中用于Pelican仪器的复合热解石墨单色仪的优化和制造

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The triple monochromator for the TOF neutron spectrometer Pelican at ANSTO has been fully optimised in terms of overall performance, including the determination of the thickness of the pyrolytic graphite crystals. A total of 24 composite crystals were designed and fabricated. The calculated optimum thickness of 1.3 mm and the length of 15 cm of the monochromator crystals, that are not available commercially, were obtained by cleaving and soldering with indium. An extensive characterisation of the crystals using X-ray and neutron diffraction was conducted before and after the cleaving and bonding processes. The results proved that no damage was introduced during fabrication and showed that the design goals were fully met. The measured peak reflectivity and rocking curve widths were indeed in an excellent agreement with theory. In addition to the superior efficiency of the triple monochromator achieved by this novel approach, the amount of the crystal material required could be reduced by 1/3.
机译:ANSTO的TOF中子光谱仪Pelican的三重单色仪在整体性能(包括确定热解石墨晶体的厚度)方面进行了全面优化。总共设计和制造了24个复合晶体。通过铟的切割和焊接获得了计算出的1.3 mm的最佳厚度和15 cm的单色仪晶体的长度(这是商业上无法获得的)。在分裂和键合过程之前和之后,使用X射线和中子衍射对晶体进行了广泛的表征。结果证明在制造过程中没有引入损坏,并且表明完全达到了设计目标。测得的峰值反射率和摇摆曲线宽度确实与理论非常吻合。除了通过这种新颖方法实现的三重单色仪的卓越效率外,所需的晶体材料量还可减少1/3。

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