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On the damage and fracture of nuclear graphite at multiple length-scales

机译:关于多尺度核石墨的损伤和断裂

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摘要

Gilsocarbon graphite, as a neutron moderator and load-bearing component in the core of the UK fleet of Advanced Gas-Cooled Reactors, possesses complex microstructural features including defects/pores over a range of length-scales from nanometres to millimetres in size. As a consequence, this material exhibits different characteristics when specimens of different length-scale are deformed. In this work, the deformation and fracture of this material have been characterised using in situ methods for specimens of micrometre size (meso-scale) and the results are then compared with those measured one length-scale smaller, and those at the macro-scale. At the micro-scale, sampling a volume of material (2x2x10 μm) excludes micro- and macro-size pores, the strength was measured to be as high as 1000 MPa (an elastic modulus of about 67 GPa). When the specimen size is increased by one order of magnitude to the meso-scale, the strength is reduced to about 100 MPa (an elastic modulus of about 20 GPa) due to the inclusion of micro-size pores. For larger engineering-size specimens that include millimetre-size pores the strength of the material averages about 20 MPa (an elastic modulus of about 11 GPa). This trend in the data is discussed and considered in the context of selecting the appropriate data for relevant multi-scale modelling.
机译:Gilsocarbon石墨是英国先进气冷堆舰队核心的中子减速剂和承重组件,具有复杂的微观结构特征,包括从纳米到毫米的各种长度尺度的缺陷/孔洞。结果,当不同长度尺度的样本变形时,这种材料表现出不同的特性。在这项工作中,已使用原位方法对微米级(中尺度)试样进行了表征,并对该材料的变形和断裂进行了表征,然后将其结果与较小长度的试样和宏观尺度的试样进行了比较。 。在微观尺度上,对一定体积的材料(2x2x10μm)进行采样会排除微观和宏观的孔隙,测得的强度高达1000 MPa(约67 GPa的弹性模量)。当样本尺寸增加一个数量级到中观尺寸时,由于包含了微尺寸的孔,强度降低到了约100 MPa(约20 GPa的弹性模量)。对于包括毫米大小孔的较大工程尺寸样本,材料的平均强度约为20 MPa(弹性模量约为11 GPa)。在为相关的多尺度建模选择合适的数据的背景下,讨论并考虑了数据的这种趋势。

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