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- W2000635243 abstract "Thermally induced surface segregation of sulfur has been measured on a gold alloy (ASTM B541). Comparisons were made among ‘‘as‐received,’’ abraded, and wear track surfaces that were ion‐sputter cleaned before heating. The wear tracks were formed by oscillatory sliding at room temperature in a pin‐on‐plate configuration; the pin was a palladium alloy (ASTM B540). Wear tracks and heating were accomplished in situ in an ultrahigh vacuum system. The elemental compositions were measured with Auger electron spectroscopy. Previous conclusions were confirmed that sulfur segregates to wear tracks due to rubbing alone and that the source of the sulfur was the bulk material. It was found that thermal sulfur segregation was significantly greater in wear tracks than on abraded surfaces, and both wear tracks and abraded surfaces had greater thermal sulfur segregation than as‐received surfaces. In the case of as‐received surfaces, a highly anisotropic distribution of sulfur was observed and was attributed to enhanced diffusion of sulfur along grain boundaries and/or defects in the near‐surface material. Thermal segregation was strongly influenced by the thermal treatment of the sample." @default.
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- W2000635243 date "1988-07-01" @default.
- W2000635243 modified "2023-09-27" @default.
- W2000635243 title "Sliding and thermal effects on sulfur segregation to gold alloy contact surfaces" @default.
- W2000635243 doi "https://doi.org/10.1116/1.575574" @default.
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