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- W88173811 abstract "A fundamental study on the dry sliding and abrasive wear behaviour of a unidirectional carbon fibre reinforced glass matrix composite was made at ambient temperature. The wear rate and friction coefficients against different metals and SiC papers were experimentally determined; in addition, scratch tests by the use of a diamond indentor were performed. The resulting wear mechanisms could be studied by scanning electron microscopy. Three principle sliding directions relative to the dominant fibre orientation in the composite were selected. When sliding took place against smooth, hard metals, the highest wear resistance and the lowest friction coefficient were observed in the antiparallel direction. For both the composite and the counterparts, the wear rates decreased as the hardness of counterpart material increased. Two types of coloured wear debris were observed; they played an important role in the wear mechanisms during sliding. The type of contact configuration with smooth metals affected the wear rates especially for the P-direction. The effects of the sliding direction and the grain size of the abrasive paper on the wear characteristics of the composite was also studied. In contrast to sliding against smooth metals, the wear rate in the AP-direction of the composite was higher than in the other two directions. The dominating wear mechanisms were in-plane bending of the fibres, which caused fibre fracture, and matrix ploughing and cutting. In addition, it was found that the wear rate increased with increasing abrasive grain size. For most cases, the wear rates of the composite were higher than those of the unfilled glass. By the use of single scratch tests, the abrasive mechanisms could be better explained." @default.
- W88173811 created "2016-06-24" @default.
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- W88173811 date "1993-01-01" @default.
- W88173811 modified "2023-10-05" @default.
- W88173811 title "Tribological Properties of Unidirectionally Oriented Carbon Fibre Reinforced Glass Matrix Composites" @default.
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- W88173811 doi "https://doi.org/10.1016/b978-0-444-89079-5.50014-3" @default.
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