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Investigation of Fracture Behavior of Steam Generator Tubes of Indian PHWR using PLT Specimens

机译:使用PLT标本调查印度PHWR蒸汽发生器管的骨折行为

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Steam generator (SG) tubes made of Ni-Cr-Fe based alloys such as Alloy-800 are used in nuclear power plants like Indian Pressurized Heavy Water Reactors (PHWRs) in the form of thin-walled tubular structural members as heat exchangers. These tubes are exposed to aggressive environments such as high temperature, internal pressure and flow-induced vibration etc. Corrosion aspects like intergranular-stress-corrosion-cracking (IGSCC) of such alloys received much attention in literature, whereas work on fracture behavior of these materials is limited, particularly for thin-walled tubes. For structural integrity assessment of SG tubes, a valid fracture mechanics parameter must be obtained. As their thickness is only about 1 mm, it is not feasible to machine standard fracture mechanics specimens from them. Moreover, the plane-strain condition of state of stress cannot be achieved at the crack-tip of these tubes which is a requisite of ASTM standard tests for fracture toughness. Thus, non-standard tests have been carried out on axially-cracked tubular specimens, directly machined from SG tubes in a test-setup known as Pin-Loading-Tension (PLT) setup for derivation of shape function from compliance for determining stress intensity factor and fracture toughness. Finite element analysis (FEM) has also been done to determine the shape function and the other required geometric functions for obtaining J from experimental data. A load-normalization technique was used for estimation of crack growth. The results obtained will be highly useful for residual life assessment of SG tubes of Indian PHWRs.
机译:蒸汽发生器(SG)由诸如合金-800的Ni-Cr-Fe的合金制成的管子用于印度加压重水反应器(PHWR)的核电站,其形式为薄壁管状结构构件作为热交换器。这些管暴露于腐蚀性环境,例如高温,内部压力和流动诱导的振动等。这种合金的晶间应激 - 腐蚀 - 破裂(IGSCC)等腐蚀方面在文献中得到了很多关注,而这些合金的关注则在这些内容中的裂缝行为材料有限,特别是对于薄壁管。对于SG管的结构完整性评估,必须获得有效的断裂力学参数。由于它们的厚度仅为1毫米,因此从它们的标准骨折机械标本中可以是不可行的。此外,在这些管的裂缝尖端不能实现应力状态的平面 - 应变条件,这是用于断裂韧性的ASTM标准试验的必要条件。因此,非标准测试已经在轴向裂纹的管状标本上进行,直接从SG管中加工在称为引脚负载张力(PLT)设置的试验设置中,用于从合规性确定应力强度因子的形状函数和断裂韧性。还已经完成了有限元分析(FEM)来确定形状函数和其他所需的几何功能,用于从实验数据获得J.负载标准化技术用于估计裂纹生长。获得的结果对于印度Phwrs的SG管的残余寿命评估是非常有用的。

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