Department of Civil Engineering, Keimyung University, 1095 Dalgubeol-daero, Dalseo-gu, Daegu 42601, Republic of Korea.
Department of Mechanical Engineering, Green Hill Engineering College, Solan 173229, HP, India.
Molecules. 2023 Jun 20;28(12):4861. doi: 10.3390/molecules28124861.
Recently, much research has revealed the increasing importance of natural fiber in modern applications. Natural fibers are used in many vital sectors like medicine, aerospace and agriculture. The cause of increasing the application of natural fiber in different fields is its eco-friendly behavior and excellent mechanical properties. The study's primary goal is to increase the usage of environmentally friendly materials. The existing materials used in brake pads are detrimental to humans and the environment. Natural fiber composites have recently been studied and effectively employed in brake pads. However, there has yet to be a comparison investigation of natural fiber and Kevlar-based brake pad composites. Sugarcane, a natural fabric, is employed in the present study to substitute trendy materials like Kevlar and asbestos. The brake pads have been developed with 5-20 wt.% SCF and 5-10 wt.% Kevlar fiber (KF) to make the comparative study. SCF compounds at 5 wt.% outperformed the entire NF composite in coefficient of friction (µ), (%) fade and wear. However, the values of mechanical properties were found to be almost identical. Although it has been observed that, with an increase in the proportion of SCF, the performance also increased in terms of recovery. The thermal stability and wear rate are maximum for 20 wt.% SCF and 10 wt.% KF composites. The comparative study indicated that the Kevlar-based brake pad specimens provide superior outcomes compared to the SCF composite for fade (%), wear performance and coefficient of friction (Δμ). Finally, the worn composite surfaces were examined using a scanning electron microscopy technique to investigate probable wear mechanisms and to comprehend the nature of the generated contact patches/plateaus, which is critical for determining the tribological behavior of the composites.
最近,大量研究揭示了天然纤维在现代应用中的重要性日益增加。天然纤维在许多重要领域得到应用,如医学、航空航天和农业。在不同领域增加天然纤维应用的原因是其环保行为和优异的机械性能。本研究的主要目的是增加对环保材料的使用。目前用于刹车片的材料对人类和环境都有害。天然纤维复合材料最近已被研究并有效地应用于刹车片。然而,还没有对天然纤维和凯夫拉基刹车片复合材料进行对比研究。在本研究中,使用天然纤维——甘蔗来替代凯夫拉和石棉等流行材料。已经用 5-20wt.% 的 SCF 和 5-10wt.% 的凯夫拉纤维(KF)开发了刹车片来进行对比研究。在摩擦系数(µ)、(%)衰退和磨损方面,SCF 化合物在 5wt.%时的表现优于整个 NF 复合材料。然而,机械性能的值几乎相同。尽管已经观察到,随着 SCF 比例的增加,恢复性能也会提高。对于 20wt.% 的 SCF 和 10wt.% 的 KF 复合材料,热稳定性和磨损率达到最大值。对比研究表明,与 SCF 复合材料相比,基于凯夫拉的刹车片样本在衰退(%)、磨损性能和摩擦系数(Δμ)方面提供了更好的结果。最后,使用扫描电子显微镜技术检查磨损复合材料表面,以研究可能的磨损机制,并理解产生的接触斑块/高原的性质,这对于确定复合材料的摩擦学行为至关重要。