2018
DOI: 10.1088/2053-1591/aac1e0
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Natural fibre reinforced non-asbestos organic non-metallic friction composites: effect of abaca fibre on mechanical and tribological behaviour

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Cited by 25 publications
(20 citation statements)
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“…is demonstrated that the relative low bre content could not enhance the bonding strength of the bre and matrix [28], which corresponded to the relatively high wear rate (Figures 8 and 9). For the case of FM-3 ( Figure 10(c), 3 wt.% corn straw bre content), the friction composite was slightly damaged, and voids and relatively loose particles were not observed indicating weakened wear in the composites, which provided evidence that the increase in corn straw bre content had a reinforcing e ect on the composites.…”
Section: Worn Surface Morphology Analysismentioning
confidence: 94%
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“…is demonstrated that the relative low bre content could not enhance the bonding strength of the bre and matrix [28], which corresponded to the relatively high wear rate (Figures 8 and 9). For the case of FM-3 ( Figure 10(c), 3 wt.% corn straw bre content), the friction composite was slightly damaged, and voids and relatively loose particles were not observed indicating weakened wear in the composites, which provided evidence that the increase in corn straw bre content had a reinforcing e ect on the composites.…”
Section: Worn Surface Morphology Analysismentioning
confidence: 94%
“…Friction coefficient (μ) and wear rate (ΔW) were automatically calculated through the computer software. Wear rate (ΔW) was determined as follows [28,37]:…”
Section: Physicomechanical and Tribological Behaviors Evaluationmentioning
confidence: 99%
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