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Room temperature tensile deformation behavior of a Ni-based superalloy with high W content
Authors:Shu  De-long  Xie  Jun  Zhang  Feng-jiang  Hou  Gui-chen  Wang  Zhen-jiang  Xun  Shu-ling  Yu  Jin-jiang  Sun  Xiao-feng  Zhou  Yi-zhou
Affiliation:Shi-changxu Innovation Center for Advanced Materials, Institute of Metal Research, Chinese Academy of Sciences, Shenyang, 110016, China
Abstract:

K416B Ni-based superalloy with high W content has good high temperature properties and low cost, which has a great development potential. To investigate the room temperature tensile property and the deformation feature of K416B superalloy, tensile testing at room temperature was carried out, and optical microscopy (OM), scanning electron microscopy (SEM) and transmission electron microscopy (TEM) were used to analyze the deformation and damage mechanisms. Results show that the main room temperature tensile deformation features of the K416B nickel-based superalloy are dislocations slipping in the matrix and shearing into γ′ phase. The <110> super-dislocations shearing into γ′ phase can form the anti-phase boundary two coupled (a/2)<110> partial-dislocations or decompose into the configuration of two (a/3)<112> partial dislocations plus stacking fault. In the later stage of tensile testing, the slip-lines with different orientations are activated in the grain, causing the stress concentration in the regions of block carbide or the porosity, and cracks initiate and propagate along these regions.

Keywords:Ni-based superalloy  high W content  microstructure  tensile behavior  deformation feature  
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