Finding “Trigger Sites” of Reactions Among Heterogeneous Materials from X-ray Microscopic Big Data Using Persistent Homology
摘要
MaterialMaterials properties are typically determined by specific features such as the heterogeneity (or “trigger sites”) of phases and chemical states. Trigger sites have been investigated in systems such as structural materialsMaterials and batteriesBatteries by using multiscale X-ray microscopy (XRM). However, identifying trigger sites manually or via computers has been challenging because the data involved are large and multidimensional. In this study, we developed a new approach to determine trigger sites on the basis of shapes of heterogeneity in XRM data by using persistent homologyPersistent homology (PH) analysis. Our results revealed the following two aspects: (1) the trigger sites for the heterogeneous reduction of iron ore sintersIron ore sinter, the complex of Ca–Fe–O oxides, and pores; and (2) the crackCrack initiation sites at the nanoscale in carbon-fiber-reinforced plastics (CFRPsCarbon Fiber-Reinforced Plastic (CFRP)) under load. We could “non-empirically” identify trigger sites from the big data obtained by XRM. This approach can be applied to identify trigger sites in various materialsMaterials.