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Computed Tomography as an Alternative Method to Measure Crack Growth in Non-conventional Geometries

机译:计算断层扫描作为测量非传统几何形状的裂纹增长的替代方法

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The computed tomography (CT) application presented herein aims at measuring cracks three dimensionally in a non-traditional fracture mechanics Superalloy 718 specimen exposed to supercritical CO_2 (sCO_2). Superalloy 718 is one material of choice for manufacturing components for Concentrated Solar Plant (CSP) units using sCO_2 power cycle. To quantify the low cycle fatigue (LCF) capability of the Superalloy 718 material exposed to sCO_2, at 550°C, 200 bar internal pressure, hollow tensile specimens were designed and LCF experiments at different loading levels were conducted. The same hollow specimen was considered to monitor fatigue crack growth (FCG) while the crack surface is exposed to sCO_2 environment. By interrupting the LCF test procedure and conducting ex situ volumetric CT scans, the location, size and shape of several cracks were identified and, incremental crack advancement was measured.
机译:本文呈现的计算机断层扫描(CT)应用旨在在暴露于超临界CO_2(SCO_2)的非传统骨折力学超合金718试样中的三维中的三维测量裂缝。高温合金718是使用SCO_2功率循环的浓缩太阳能厂(CSP)单元的制造部件的一种首选材料。为了量化暴露于SCO_2暴露于SCO_2的高温合金718材料的低循环疲劳(LCF)能力,在550℃,200巴内压,设计中空拉伸试样,并进行不同负载水平的LCF实验。认为相同的空心标本监测疲劳裂纹生长(FCG),而裂缝表面暴露于SCO_2环境。通过中断LCF测试程序并进行EX原位体积CT扫描,鉴定了几个裂缝的位置,尺寸和形状,并测量了增量裂纹进步。

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