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Evaluation of biomass conversion-based rice husk ash in sustainable brake pad production: a study on tribological performance and synergistic behavior at the brake disc-pad interface

delete2026-07-29
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PRE
AI
H
Hicri Yavuz *
E
Ersan Mertgenç
H
Hüseyin Bayrakçeken
DOI:10.1007/s13399-026-07227-2delete
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Abstract

Abstract

En 中文
The use of ecologically friendly biomass conversion-based products as well as sustainable and renewable-based products has recently become increasingly important in the development of brake pad materials. Using rice husk ash, a biomass-based material, at 0%, 6%, 12%, and 18% has resulted in four different brake pad compositions. The study also examined the effects of brake pads on brake discs during braking and studies conducted by researchers using this material in the field of brake pads. To quantify this effect, we determined the change in surface roughness of the discs before and after the brake tests. We used a brake testing machine during the tests. The results allowed us to determine whether the produced samples met industrial standards. Based on the data, brake pads produced with rice husk ash met the expected quality values. Specimens containing 12% and 18% rice ash, in particular, produced appropriate roughness on the brake disc. In conclusion, the successful use of biomass conversion-based rice husk ash in brake pad production has been supported academically and industrially. A study on the braking system performance of biomass-converted rice husk ash-based vehicle brake pads. Superior performance of rice husk ash-based biomass-converted vehicle brake pads in all performance aspects. Superior performance of rice husk ash-based biomass-converted vehicle brake pads for brake discs. Excellent coefficient of friction and wear rates for brake pads in all samples.
Keywords:
Brake pad
Biomass conversion
Coefficient of friction
Brake disc
Wear

Journal

Biomass Conversion and Biorefinery cover
Biomass Conversion and Biorefinery
IF:
4.1
Papers:
7.0K
Citations:
2.2W

Organization

A
Afyon Vocational School
Scholars:
3
Papers: 2
Citations: 0
F
faculty of technology
Scholars:
272
Papers: 124
Citations: 0
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