有限元分析在中子层析成像中子透明高压样品环境热梯度测定中的应用

IF 1.2 4区 物理与天体物理 Q3 PHYSICS, MULTIDISCIPLINARY High Pressure Research Pub Date : 2023-06-24 DOI:10.1080/08957959.2023.2225702
Vili Grigorova, S. Shcheka, F. Salehi, K. Kamenev, S. Clark
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引用次数: 0

摘要

摘要建立了一个三维有限元分析模型来描述新型中子透明高压样品组件内的温度分布。通过实验验证了该模型的有效性。有限元分析模型用于评估样品组件的温度梯度,并优化其几何形状和组件。结果表明,在假设热电偶位于样品组件中间的情况下,使用热电偶在实验室记录的温度与有限元分析模型计算的温度之间的差异仅为4%。模型进一步证明,有限元分析方法是一种有价值的工具,可以通过考虑不同材料的影响及其部件形状的变化来优化样品组件。
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Use of finite element analysis for the thermal gradient determination of a neutron transparent high-pressure sample environment for neutron tomography
ABSTRACT A 3D Finite Element Analysis model was developed to describe the temperature distribution inside a novel neutron transparent high-pressure sample assembly. The validity of the model was established by conducting experimental validation. The Finite Element Analysis model was utilised to evaluate the sample assembly’s temperature gradients and optimise its geometry and components. The results indicate that the discrepancy between the temperature recorded in the laboratory using thermocouples and the temperature calculated by the Finite Element Analysis model was only 4% under the assumption that the thermocouple was positioned in the middle of the sample assembly. The models further demonstrate that the Finite Element Analysis approach is a valuable tool for optimising the sample assembly by considering the impact of different materials and variations in the shape of its components.
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来源期刊
High Pressure Research
High Pressure Research 物理-物理:综合
CiteScore
3.80
自引率
5.00%
发文量
15
审稿时长
2 months
期刊介绍: High Pressure Research is the leading journal for research in high pressure science and technology. The journal publishes original full-length papers and short research reports of new developments, as well as timely review articles. It provides an important forum for the presentation of experimental and theoretical advances in high pressure science in subjects such as: condensed matter physics and chemistry geophysics and planetary physics synthesis of new materials chemical kinetics under high pressure industrial applications shockwaves in condensed matter instrumentation and techniques the application of pressure to food / biomaterials Theoretical papers of exceptionally high quality are also accepted.
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