Matache Gheorghe, Paraschiv Alexandru, Condruz Mihaela Raluca
National Research and Development Institute for Gas Turbines COMOTI, 220D Iuliu Maniu Av., 061126 Bucharest, Romania.
Materials (Basel). 2020 Oct 29;13(21):4859. doi: 10.3390/ma13214859.
The notch sensitivity of additively manufactured IN 625 superalloy produces by laser powder bed fusion (LPBF) has been investigated by tensile testing of cylindrical test pieces. Smooth and V-notched test pieces with four different radii were tested both in as-built state and after a stress relief heat treatment for 1 h at 900 °C. Regardless of the notch root radius, the investigated alloy exhibits notch strength ratios higher than unity in both as-built and in stress-relieved states, showing that the additive manufactured IN 625 alloy is not prone to brittleness induced by the presence of V-notches. Higher values of notch strength ratios were recorded for the as-built material as a result of the higher internal stress level induced by the manufacturing process. Due to the higher triaxiality of stresses induced by notches, for both as-built and stress-relieved states, the proof strength of the notched test pieces is even higher than the tensile strength of the smooth test pieces tested in the same conditions. SEM fractographic analysis revealed a mixed mode of ductile and brittle fracture morphology of the V-notched specimens regardless the notch root radius. A more dominant ductile mode of fracture was encountered for stress-relieved test pieces than in the case of the as-built state. However, future research is needed to better understand the influence of notches on additive manufactured IN 625 alloy behaviour under more complex stresses.
通过对圆柱形试件进行拉伸试验,研究了激光粉末床熔融(LPBF)增材制造的IN 625高温合金的缺口敏感性。对具有四种不同半径的光滑和V形缺口试件在制造态以及在900℃进行1小时消除应力热处理后进行了测试。无论缺口根部半径如何,所研究的合金在制造态和消除应力状态下的缺口强度比均高于1,表明增材制造的IN 625合金不易因V形缺口的存在而产生脆性。由于制造过程引起的较高内部应力水平,制造态材料的缺口强度比记录值更高。由于缺口引起的应力三轴性更高,对于制造态和消除应力状态,缺口试件的规定强度甚至高于在相同条件下测试的光滑试件的抗拉强度。扫描电子显微镜断口分析表明,无论缺口根部半径如何,V形缺口试样的断裂形态为韧性和脆性混合模式。与制造态相比,消除应力试件的韧性断裂模式更为显著。然而,需要进一步研究以更好地理解在更复杂应力下缺口对增材制造的IN 625合金性能的影响。