Effect of Strain Rate and Loading Direction on the Mechanical Properties of Ni-Cr-Al Superalloy Foam Fabricated by Powder Alloying Method

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초록

The powder-alloyed metallic sheet foam manufacturing process has the advantage of being able to control pore shape, size, and distribution more easily and homogeneously than conventional foam manufacturing processes. The effects of strain rate and tensile direction on the mechanical properties of Ni-Cr-Al superalloy foam fabricated by powder alloying method were investigated. As a result of structural characteristics obtained by X-ray tomography and scanning electron microscopy, average pore sizes were measured to be 2762.4 mu m (normal direction), 2709.1 mu m (rolling direction, RD), and 2518.4 mu m (transverse direction, TD) respectively. The gamma-Ni matrix and gamma'-Ni3Al (which was evenly distributed in the strut) were identified as the main constituent phases of the Ni-Cr-Al foam used in this study. Tensile tests were conducted with strain rates of 10(-2) similar to 10(-4) s(-1) along the rolling and transverse directions. The results showed that the tensile strength in the RD direction was 1.84 similar to 2.01 MPa, and in the TD direction was 1.2 similar to 1.27 MPa. The elongation in the TD direction was higher (30 similar to 36%) than in the RD direction (17 similar to 22%). It is noteworthy that the effect of quasi-static strain rate on the tensile strength and elongation was negligible. However, the loading direction was found to change mechanical properties significantly. This study also discussed the deformation behavior of the Ni-Cr-Al superalloy foam through observations of the fracture surface, and real-time observations during tensile tests in different directions.

키워드

Ni-Cr-Al superalloy foamstructural characteristicsmicrostructuretensile propertiesstrain rateOPEN-CELL NICKELHEAT-TRANSFERMETALMICROSTRUCTUREDEFORMATIONBEHAVIOR
제목
Effect of Strain Rate and Loading Direction on the Mechanical Properties of Ni-Cr-Al Superalloy Foam Fabricated by Powder Alloying Method
저자
Kim, Kyu-SikBae, Jung-SukOh, Jae-SungLee, Kee-Ahn
DOI
10.3365/KJMM.2020.58.6.375
발행일
2020-06
유형
Article
저널명
대한금속·재료학회지
58
6
페이지
375 ~ 382