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Testing and Analysis of Uniaxial Mechanical Fatigue, Charpy Impact Fracture Energy and Microhardness of Two Low-Carbon Steels (CROSBI ID 319499)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Brnić, Josip ; Baloš, Sebastian ; Brčić, Marino ; Dramičanin, Miroslav ; Kršćanski, Sanjin ; Milutinović, Mladomir ; Ding, Biao ; Gao, Zeng Testing and Analysis of Uniaxial Mechanical Fatigue, Charpy Impact Fracture Energy and Microhardness of Two Low-Carbon Steels // Materials, 16 (2023), 2; 884, 20. doi: 10.3390/ma16020884

Podaci o odgovornosti

Brnić, Josip ; Baloš, Sebastian ; Brčić, Marino ; Dramičanin, Miroslav ; Kršćanski, Sanjin ; Milutinović, Mladomir ; Ding, Biao ; Gao, Zeng

engleski

Testing and Analysis of Uniaxial Mechanical Fatigue, Charpy Impact Fracture Energy and Microhardness of Two Low-Carbon Steels

The paper presents and analyzes the results of experimental tests performed on two nonalloy low carbon steels (1.1141 and 1.0122) in cases of their exposure to impact fracture energy and uniaxial high cyclic mechanical stress-controlled fatigue. The experimental results provide insight into the changes in the Charpy impact fracture energy of the V-notched test specimen that occur as a result of temperature changes. The experimental results also provide insight into the mechanical response of the tested materials to mechanical uniaxial high-cycle fatigue at room temperature in an air atmosphere and at different applied stress ratios. Material fatigue tests refer to symmetric (R = −1), asymmetric (R = −0.5) and pulsating tensile (R = 0) cycles. The test results are shown in the S– N diagrams and refer to the highest applied stresses in relation to the number of failures at a given stress ratio. Using the modified staircase method, the fatigue limit (endurance limit) was calculated for both tested materials at each prescribed stress ratio. For both tested steel alloys, and at prescribed stress ratios, the fatigue limit levels (σ_f) are shown as follows: for steel C15E+C (1.1141) → 𝜎𝑓 [250.8𝑅=−1 ; 345.4𝑅=−0.5 ; 527𝑅=0 ](MPa) ; and for steel S235JRC+C (1.0122) → 𝜎𝑓 [202𝑅=−1 ; 310𝑅=−0.5 ; 462𝑅=0 ](MPa). All uniaxial fatigue tests were performed on unnotched, smooth, highly- polished specimens. The microhardness of both materials was also tested.

Uniaxial fatigue and fatigue limit ; Charpy impact fracture energy ; hardness ; C15E+C(1.1141) steel ; S235JRC+C (1.0122) steel

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Podaci o izdanju

16 (2)

2023.

884

20

objavljeno

1996-1944

10.3390/ma16020884

Povezanost rada

Brodogradnja, Strojarstvo, Temeljne tehničke znanosti

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