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- W4308326879 endingPage "108048" @default.
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- W4308326879 abstract "Frictional stability is a more accurate description of the friction state than coefficient of friction (COF) and wear rate. This work aims to develop basalt fiber (BF)-reinforced braking material as high frictional stability friction materials. The findings demonstrate that using the BF can improve the mechanical, thermal properties and COF of the brake material while also enhancing the frictional stability, and restricting the friction fluctuation range between 0.040-0.110. The mechanism of frictional stability of BF is explained in detail under macro and micro levels. This work is expected to provide some reference value for the design and development of fiber-reinforced friction composites and the mechanism for interpretation of friction stability. • Non-asbestos organic (NAO) brake pad with high frictional stability were fabricated. • Basalt fiber (BF) length shows a significant effect on the mechanical, thermal conductivity (TC), tribological properties and frictional stability. • The addition of BFs not only enhances the COF of materials, but also exhibits extremely low friction fluctuation. • The overall R value of 0.94879 demonstrates the ANN model has a strong capacity to predict the COF and frictional stability after training." @default.
- W4308326879 created "2022-11-11" @default.
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- W4308326879 date "2023-02-01" @default.
- W4308326879 modified "2023-09-29" @default.
- W4308326879 title "High frictional stability of braking material reinforced by Basalt fibers" @default.
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- W4308326879 doi "https://doi.org/10.1016/j.triboint.2022.108048" @default.
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