会议论文详细信息
19th Chemnitz Seminar on Materials Engineering – 19. Werkstofftechnisches Kolloquium
Analysis of the ductility dip cracking in the nickel-base alloy 617mod
Eilers, A.^1 ; Nellesen, J.^2 ; Zielke, R.^2 ; Tillmann, W.^1
Institute of Materials Engineering, TU Dortmund, Leonhard-Euler-Str. 2, Dortmund
44227, Germany^1
RIF E.V., Dortmund, Germany^2
关键词: Coincidence site lattices;    D. digital image correlation (DIC);    Ductility-dip cracking;    Ductility-dip cracking (DDC);    Electron back scatter diffraction;    Energy dispersive X ray spectroscopy;    Information concerning;    Interrupted tensile test;   
Others  :  https://iopscience.iop.org/article/10.1088/1757-899X/181/1/012020/pdf
DOI  :  10.1088/1757-899X/181/1/012020
来源: IOP
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【 摘 要 】

While testing steam leading power plant components made of the nickel-base alloy A617mod at elevated temperatures (700 °C), ductility dip cracking (DDC) was observed in welding seams and their surroundings. In order to clarify the mechanism of crack formation, investigations were carried out on welded specimens made of A617mod. Interrupted tensile tests were performed on tensile specimens taken from the area of the welding seam. To simulate the conditions, the tensile tests were conducted at a temperature of 700 °C and with a low strain rate. Local strain fields at grain boundaries and inside single grains were determined at different deformation states by means of two-dimensional digital image correlation (DIC). Besides the strain fields, local hardnesses (nanoindentation), energy dispersive X-Ray spectroscopy (EDX), and electron backscatter diffraction (EBSD) measurements were performed. Besides information concerning the grain orientation, the EBSD measurement provides information on the coincidence site lattice (CSL) at grain boundaries as well as the Schmid factor of single grains. All results of the analysis methods mentioned above were correlated and compared to each other and related to the crack formation. Among other things, correlations between strain fields and Schmid factors were determined. The investigations show that the following influences affect the crack formation: orientation of the grain boundaries to the direction of the loading, the orientation of the grains to each other (CSL), and grain boundary sliding.

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