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STUDY ON FABRICATION AND PROPERTIES OF 304 STAINLESS STEEL CAPILLARY TUBES/Zr53.5Cu26.5Ni5Al12Ag3 BULK METALLIC GLASS COMPOSITES |
MA Guangcai1, FU Huameng1, WANG Zheng2, XU Qingliang3, ZHANG Haifeng1( ) |
1 Shenyang National Laboratory for Materials Science, Institute of Metal Research, Chinese Academy of Sciences, Shenyang 110016 2 Shenyang Kejin Advanced Material Company Limited, Shenyang 110016 3 Petrochina Daqing Petrochemical Company Acrylic Fiber Plant, Daqing 163714 |
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Cite this article:
MA Guangcai, FU Huameng, WANG Zheng, XU Qingliang, ZHANG Haifeng. STUDY ON FABRICATION AND PROPERTIES OF 304 STAINLESS STEEL CAPILLARY TUBES/Zr53.5Cu26.5Ni5Al12Ag3 BULK METALLIC GLASS COMPOSITES. Acta Metall Sin, 2014, 50(9): 1087-1094.
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Abstract Different volume fractions of 304 stainless steel capillary tubes/Zr53.5Cu26.5Ni5Al12Ag3 metallic glass composites were prepared using infiltration method. Their properties and deformation behaviors were investigated systematically. The mechanical properties were performed on materials test machine. Surfaces and fracture morphologies were examined using white light interferometer, X-ray 3D imaging and SEM techniques. The results show that the ductility of composites was improved. The compressive strain of composite reaches 20% when the volume fraction is 34%. The deformation involves obvious work hardening. The amount of work hardening depends on the content of tubes. The composite fails in the shear mode along 45°. The split and debonding of tubes and interfaces act as the propagation way of crack. The amount of shear bands increase as the volume fraction increases. The shear deformation of amorphous in tubes falls behind that out tubes.
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Fund: Supported by National Basic Research Program of China (No.2011CB606301) and Program of “One Hundred Talented People” of The Chinese Academy of Sciences |
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