Journal of Applied Materials and Technology
Vol. 8 No. 1 (2026): September 2026

Synergic effect of oxidized polyacrylonitrile fibers and zinc borate on spark suppression in automotive brake pad composite materials

Micael G. Müller (Postgraduate Program in Materials Technology and Engineering (PPGTEM), Federal Institute of Rio Grande do Sul (IFRS), R. Princesa Isabel, 60, 95770-000, Feliz, RS, Brazil)
Natália P. Lorandi (FRAS-LE S.A. RS 122, km 66, Caxias do Sul, CEP 95115-550, RS)
Matheus V. G. Zimmermann (Postgraduate Program in Science and Engineering Materials (PPGCEM), University of Extremo Sul Catarinense (UNESC), Av. Universitária, 1105, 88806-000, Criciúma, SC, Brazil)
Heitor Luiz Ornaghi Júnior (Programa de Pós-Graduação em Engenharia de Processos e Tecnologias (PGEPROTEC), Universidade de Caxias do Sul, Rua Francisco Getúlio Vargas, 1130, Bairro Petrópolis, CEP 95070-560, Caxias do Sul, Rio Grande do Sul, Brazil)
Alexandre L. Gasparin (Postgraduate Program in Materials Technology and Engineering (PPGTEM), Federal Institute of Rio Grande do Sul (IFRS), R. Princesa Isabel, 60, 95770-000, Feliz, RS, Brazil)
Daiane Romanzini (Postgraduate Program in Materials Technology and Engineering (PPGTEM), Federal Institute of Rio Grande do Sul (IFRS), R. Princesa Isabel, 60, 95770-000, Feliz, RS, Brazil)



Article Info

Publish Date
23 Jul 2026

Abstract

The mechanical, physical, and thermal properties of composite friction material are key parameters influencing both the direct performance of automotive brake systems and secondary phenomena, such as spark and flame generation during braking. These properties are strongly affected by the composition and interaction of the raw materials used in the formulation. In this study, a novel friction material for automotive brake pads was developed with the aim of improving tribological and physical performance while reducing spark and flame generation. Oxidized polyacrylonitrile (PAN) fiber was incorporated into a reference formulation at volume ratios of 1:1, 1:2, and 1:4 relative to the aramid fiber conventionally used. In addition, zinc borate was introduced at 5, 10, and 15 vol%, replacing part of the conventional filler content. A hybrid formulation containing both PAN fiber and zinc borate was also evaluated to investigate possible synergistic effects. The samples were characterized by scanning electron microscopy, Gogan hardness, specific gravity, cold and hot compressibility, and thermal conductivity tests. Spark and flame generation tests were also performed under simulated braking conditions. The results showed that the incorporation of PAN fiber reduced material stiffness, whereas zinc borate increased it; their combined use resulted in a more balanced mechanical response. Compressibility and porosity were also affected by the additives, with noticeable variations among the formulations. Internal shear strength was significantly influenced, with one hybrid formulation showing a marked increase. In particular, the hybrid formulation exhibited a balanced performance, with reduced spark generation, indicating its potential for automotive brake pad applications.

Copyrights © 2026






Journal Info

Abbrev

jamt

Publisher

Subject

Chemical Engineering, Chemistry & Bioengineering Civil Engineering, Building, Construction & Architecture Engineering Mechanical Engineering

Description

Journal of Applied Materials and Technology (JAMT) is aimed at capturing current development and initiatives in applied materials and technology. JAMT showcases innovative applied materials and technology, providing an opportunity for science, transfer and collaboration of technology. JAMT focuses ...