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- W1491740846 abstract "Within the framework of European fusion technology program works have been initiated towards characterization of fracture mechanical properties of insulation layers sandwiched between metallic components which contain cracks. The aim of these measurements is to develop a reliable and validated test technique for the determination of the fracture components based on mode I and II fracture toughness values of the cracked insulation material. Prior to the start of the mode II and mixed mode measurements the mode I fracture toughness of the insulation systems were measured at 295 K and at 7 K using different size compact tension (CT) specimens composed of stainless steel sandwiching reinforced epoxy insulation material. For the necessary pre‐crack a fine Teflon paper of 0.035 mm thickness has been inserted inside the epoxy system. For the mode II fracture toughness tests specimens of type DLT (double lap tensile), DLC (double lap compression), SLC (single lap compression), ENF (end‐notched flexure), and TENF (tapered end‐notched flexure) have been investigated for their applicability. With extremely sensitive displacement measurements the compliances of the DLT, DLC, SLC, ENF, and TENF specimens could be recorded for the necessary computation of total fracture energy release rate G." @default.
- W1491740846 created "2016-06-24" @default.
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- W1491740846 date "2006-01-01" @default.
- W1491740846 modified "2023-09-23" @default.
- W1491740846 title "Characterization of Mode II Fracture Properties of Fiber Reinforced Insulation Systems for Superconducting Cables" @default.
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- W1491740846 doi "https://doi.org/10.1063/1.2192362" @default.
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