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Effect of palm fronds and rice husk composition ratio on the mechanical properties of composite-based brake pad


 
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1. Title Title of document Effect of palm fronds and rice husk composition ratio on the mechanical properties of composite-based brake pad
 
2. Creator Author's name, affiliation, country A. B. D.Nandiyanto, R.Ragadhita, G. C. S. Girsang, S. Anggraeni, S. R. Putri, F. H. Sadiyyah, M. R. Hibatulloh, Valensia, D. P. Setiadi; Asep Bayu Dani Nandiyanto*, R. Ragadhita, Gabriela Chelvina Santiuly Girsang, Sri Anggraeni, Silmi Ridwan Putri, Fitriani Halimatus Sadiyyah, Miussa Rio Hibatulloh, Valensia, Dwi Putra Setiadi; Morocco
 
3. Subject Discipline(s)
 
3. Subject Keyword(s) Composite polymer-based brake pad, palm fronds, rice husk, mechanical properties, lignocellulose.
 
4. Description Abstract

The purpose of this study was to determine the effect of biomass composition (i.e. palm frond (PF) and rice husk (RH)) on the mechanical properties of composite-based brake pad (CBP). CBP was made by mixing polyester resin matrix with PF and RH (as the reinforcing agent) using a step-growth mechanism reaction with additional methyl ethyl ketone peroxide (MEKP) as a catalyst. CBP was made by mixing polyester resin and catalyst with a ratio of 10:1 with PF and RH. The PF and RH were added with a ratio of 10/90; 30/70; 50/50; 70/30; and 90/10. To support the analysis, mechanical tests such as compressive and friction tests were carried out. The experimental results showed that the RH composition allowed the obtainment of a strong composite-based brake pad and a low wear value since RH has a high component of lignocellulose. Although PF also strengthened the brake pad, the mechanical impact is not higher than RH. The high lignocellulose content in the RH made the optimal quality of composite-based brake pad-based. This study demonstrates the effectiveness of the use of biomass as an alternative reinforcing agent in the composite-based brake pad material.

 
5. Publisher Organizing agency, location
 
6. Contributor Sponsor(s)
 
7. Date (YYYY-MM-DD) 04-09-2022
 
8. Type Status & genre Peer-reviewed Article
 
8. Type Type
 
9. Format File format PDF
 
10. Identifier Uniform Resource Identifier https://revues.imist.ma/index.php/morjchem/article/view/34291
 
10. Identifier Digital Object Identifier (DOI) https://doi.org/10.48317/IMIST.PRSM/morjchem-v10i4.34291
 
11. Source Title; vol., no. (year) Moroccan Journal of Chemistry; Vol 10, No 4 (2022)
 
12. Language English=en en
 
13. Relation Supp. Files
 
14. Coverage Geo-spatial location, chronological period, research sample (gender, age, etc.)
 
15. Rights Copyright and permissions Copyright (c) 2022 Moroccan Journal of Chemistry