2022
DOI: 10.1007/s11665-022-07189-2
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Tribological Behaviors and Friction-Induced Vibration and Noise Performance of TC4 with Microporous Channels Filled by Sn-Ag-Cu and Nb2C

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Cited by 5 publications
(2 citation statements)
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“…As shown in Figure 2, the friction tests of MMSC samples were executed with a friction testing machine (MFT-5000, Rtec, USA) for 30 min at room temperature (25°C). Referring to the previous experimental study of Gao et al (2023), the contact loading force for the experiment is determined to be 20 N. The sliding friction distance is 8 mm, and the frequency is 1 Hz (Gao et al , 2023). Before the beginning of the experiment, the as-prepared samples were fixed on the friction testing machine, and Si 3 N 4 ball with a radius of 3 mm was selected for the counterpart ball.…”
Section: Methodsmentioning
confidence: 99%
“…As shown in Figure 2, the friction tests of MMSC samples were executed with a friction testing machine (MFT-5000, Rtec, USA) for 30 min at room temperature (25°C). Referring to the previous experimental study of Gao et al (2023), the contact loading force for the experiment is determined to be 20 N. The sliding friction distance is 8 mm, and the frequency is 1 Hz (Gao et al , 2023). Before the beginning of the experiment, the as-prepared samples were fixed on the friction testing machine, and Si 3 N 4 ball with a radius of 3 mm was selected for the counterpart ball.…”
Section: Methodsmentioning
confidence: 99%
“…Hardness and wear resistance were higher than for the hot-rolled duplex stainless steel, and the corrosion resistance was comparable. In their work, Gao et al [135] prepared a TC4-Sn-Ag-Cu-Nb2C alloy in combination with microporous channels using the LAM process to reduce friction and noise emissions. Compared with the pure TC4 and TC4-Sn-Ag-Cu, friction and wear as well as noise emissions were reduced in tribometer tests.…”
Section: Selective Laser Melting (Slm)mentioning
confidence: 99%