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- W2013291324 abstract "ABSTRACT A tribological surface under the reciprocating motion or the rotating motion generates heat, which is caused by friction force at the moving interface. It is very difficult to measure and visualize the transient temperature distribution on a friction surface. But in case when a friction surface is visible directly, its temperature distribution can be observed by means of the infrared radiometer. In measuring, at first, a radiation temperature Ts' must be calibrated by measuring a real temperature Ts of a tested material at the friction interface, which is made of steel, pom (polyoxymethylen) resin, brass and so on. In this study, experiments are performed under several friction conditions and a friction surface is visualized by the infrared radiometer which can measure a two dimensional radiation temperature distribution on the surface. Generated heat at a friction surface is transferred to both interfacial materials by thermal conduction and is transferred to the surroundings by convective heat transfer and thermal radiation. The transient temperature field at the friction surface is recorded by the data recorder and is analyzed by a personal computer. In estimating the friction surface, friction force (μF, reciprocating speed V and rotating speed ω, which are characteristic quantities in this study, are measured and the relation between friction force μF and radiation temperature rising ΔTs' at the friction interface is studyd experimentally. Moreover, the transient behavior of the temperature field at the friction interface is also discussed." @default.
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- W2013291324 date "1993-08-01" @default.
- W2013291324 modified "2023-09-26" @default.
- W2013291324 title "Thermal visualization study of friction surface and its estimation" @default.
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- W2013291324 doi "https://doi.org/10.1016/0894-1777(93)90173-g" @default.
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