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Crack growth resistance in nuclear graphites

机译:核石墨的抗裂纹扩展性

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Crack growth resistance curves for the non-linear fracture parameters K-R. J(R) and R were measured for unirradiated PGA and IM1-24 graphites that are used as moderators in British Magnox and AGR nuclear reactors respectively. All the curves show an initial rising part, followed by a plateau region where the measured parameter is independent of crack length. JR and R decreased at large crack lengths. The initial rising curves were attributed to development of crack bridges in the wake of the crack front, while, in the plateau region, the crack bridging zone and the frontal process zone, ahead of the crack tip, reached steady state values. The decreases at large crack lengths were attributed to interaction of the frontal zone with the specimen end face. Microscopical evidence for graphite fragments acting as crack bridges showed that they were much smaller than filler particles, indicating that the graphite fragments are broken down during crack propagation. There was also evidence for friction points in the crack wake zone and shear cracking of some larger fragments. Inspection of KR curves showed that crack bridging contributed similar to0.4 MPa m(0.5) to the fracture toughness of the graphites. An analysis Of JR and R curves showed that the development of the crack bridging zone in the rising part of the curves contributed similar to20% to the total work of fracture. Energies absorbed during development of crack bridges and steady state crack propagation were greater for PGA than for IM1-24 graphite. These differences reflect the greater extent of irreversible processes occurring during cracking in the coarser microtexture of PGA graphite. [References: 14]
机译:非线性断裂参数K-R的抗裂纹扩展曲线。测量了未辐照的PGA和IM1-24石墨的J(R)和R,它们分别在英国Magnox和AGR核反应堆中用作调节剂。所有曲线都显示出一个初始的上升部分,然后是一个平稳区域,在该平稳区域中,所测量的参数与裂纹长度无关。大裂纹长度下,JR和R减小。最初的上升曲线归因于裂纹前沿之后裂纹桥的发展,而在高原区域,裂纹尖端之前的裂纹桥接区和额叶加工区达到了稳态值。大裂纹长度下的减少归因于额叶区域与试样端面的相互作用。石墨碎片充当裂纹桥的微观证据表明,它们远小于填料颗粒,表明石墨碎片在裂纹扩展过程中被分解。也有证据表明在裂纹尾迹区有摩擦点,在一些较大的碎片上有剪切裂纹。检查KR曲线表明,裂纹桥接对石墨的断裂韧性的贡献类似于0.4 MPa m(0.5)。对JR和R曲线的分析表明,在曲线的上升部分裂纹桥接区的发展对断裂总功的贡献接近20%。 PGA的裂纹桥发展和稳态裂纹扩展过程中吸收的能量大于IM1-24石墨。这些差异反映了在较粗的PGA石墨微观结构中开裂过程中发生的不可逆过程的程度更大。 [参考:14]

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