2021
DOI: 10.1111/ffe.13589
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Small‐sized specimen design with the provision for high‐frequency bending‐fatigue testing

Abstract: The testing and study of emerging materials-such as additively manufactured materials-demands for specimen designs that are cost effective and time saving. The design of a small-sized bending-fatigue test specimen for an ultrasonic fatigue testing system is reported in this paper. The design is optimized based on the finite element analysis and analytical-solution results to achieve the proper vibration shape and stress distribution. The proposed design is evaluated in the high-and very-high-cycle fatigue regi… Show more

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Cited by 19 publications
(18 citation statements)
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“…Then, the surfaces of the specimens were mirror-finished using a vibratory polisher. Before testing, the specimens’ thicknesses were measured at their gauge sections to calculate the induced stresses and verify uniform thickness throughout the samples [ 30 ].…”
Section: Test Specimen Preparationmentioning
confidence: 99%
“…Then, the surfaces of the specimens were mirror-finished using a vibratory polisher. Before testing, the specimens’ thicknesses were measured at their gauge sections to calculate the induced stresses and verify uniform thickness throughout the samples [ 30 ].…”
Section: Test Specimen Preparationmentioning
confidence: 99%
“…Ultrasonic fatigue tester with the loading frequency of 20 kHz has got a huge success in the researches of VHCF tests with the axial‐loading 4 and fully reversed bending loading 5 . It becomes a most popular approach of VHCF testing, and numerous S‐N data in the VHCF regime have been conveniently obtained due to its high efficiency.…”
Section: Introductionmentioning
confidence: 99%
“…Ultrasonic fatigue tester with the loading frequency of 20 kHz has got a huge success in the researches of VHCF tests with the axial-loading 4 and fully reversed bending loading. 5 It becomes a most popular approach of VHCF testing, and numerous S-N data in the VHCF regime have been conveniently obtained due to its high efficiency. Moreover, the relevant VHCF failure mechanisms of titanium alloys 6,7 and other alloys 8,9 have been revealed, which substantially promotes the applications and development of materials in the long fatigue lifetime.…”
Section: Introductionmentioning
confidence: 99%
“…The miniature tensile bar has dimensions shown in Figure 3, following American Society for Testing and Materials standards (Hung et al , 2020; Kolhatkar et al , 2019). An Instron machine was used to measure the tensile specimens with a clip-on extensometer at the crosshead speed of 0.015 1/min (strain rate per minute) (Jirandehi and Khonsari, 2021; Ghadimi et al , 2021). The YS, UTS and ductility were measured from eight LFP-fabricated tensile specimens in the laser scan direction, and the mean values and standard deviations (STDs) were reported.…”
Section: Process Overview Constructed System and Experimental Measure...mentioning
confidence: 99%