Journal Article

·2013 OPEN ACCESS

Residual Stress Analysis of Insulation Coatings for Magnet Technologies

D. Güney YTU

Archives of Metallurgy and Materials

Abstract

Abstract High temperature MgO-ZrO 2 insulation coatings were grown on long-length Stainless-Steel (SS) tapes by reel-to-reel sol-gel method for applications of High Temperature Superconductor/Low Temperature Superconductor (HTS/LTS) coils and magnets. The residual stresses were investigated analytically at various temperature ranges, 580°C to 25°C (room temperature) and -196°C (liquid helium temperature), and 630°C to 25°C and -196°C for different thicknesses to be 13, 12, and 7 μm. The maximum stress values were obtained to be 1.92 GPa in tension for SS substrate with the 13 μm coating and -2.42 GPa in compression for the 7 μm MgO-ZrO 2 coating in the temperature range between 630°C and liquid helium temperature. The surface morphologies and microstructure of sample were also characterized using a scanning electron microscope (SEM). SEM observations revealed that MgO-ZrO 2 coatings have a mosaic like crack structure.

Keywords

Materials science Scanning electron microscope Liquid helium Microstructure Residual stress Composite material Coating Atmospheric temperature range Helium Magnet Substrate (aquarium)

Subject Areas

Advanced ceramic materials synthesis ·Ceramics and Composites ·Physical Sciences
Metal and Thin Film Mechanics ·Mechanics of Materials ·Physical Sciences
Magnesium Oxide Properties and Applications ·Materials Chemistry ·Physical Sciences