Thirupathi Suresh, Gopalan Venkatachalam, Mallichetty Elango
School of Mechanical Engineering, Vellore Institute of Technology, Chennai, 600127, Tamilnadu, India.
Centre for Advanced Materials and Innovative Technologies, Vellore Institute of Technology, Chennai, 600127, Tamilnadu, India.
Heliyon. 2024 Oct 22;10(21):e39657. doi: 10.1016/j.heliyon.2024.e39657. eCollection 2024 Nov 15.
The study focuses on Palm fruit Fibers (PF) extracted from the palmyra palm tree (Borassus flabellifer) treated with 5 % alkali solution (NaOH). This treatment eliminates impurities from the fiber surface and enhances bonding with the epoxy matrix. Epoxy composites, reinforced with PF/nanofillers (h-BN, AlO and MWCNT), are developed by using the box Behnken method (BBD) and dielectric constant is investigated under high-frequency and electrical field conditions. Dielectric constants (K) of the nanocomposites are determined using various capacitor terminal setups. The electrical properties of the Epoxy/PF nanocomposite, based on fiber content (Wt. %), fiber mesh size (μm) and nanofillers are evaluated using response surface methodology (RSM). Models, predicting nanocomposite dielectric constants, are established, fitting experimental values closely with R nearing 1 and residuals adhering to a normal probability plot. The optimized dielectric constant of 1.05 is achieved at 3 wt% palm fiber content, 150 μm fiber mesh size and 1 wt% nano h-BN.
该研究聚焦于从扇叶棕榈(Borassus flabellifer)中提取的棕榈果纤维(PF),并用5%的碱溶液(NaOH)进行处理。这种处理可去除纤维表面的杂质,并增强与环氧基质的结合力。通过使用Box-Behnken方法(BBD)制备了用PF/纳米填料(h-BN、AlO和MWCNT)增强的环氧复合材料,并在高频和电场条件下研究了介电常数。使用各种电容器终端设置测定了纳米复合材料的介电常数(K)。基于纤维含量(重量%)、纤维网尺寸(μm)和纳米填料,采用响应面方法(RSM)评估了环氧/PF纳米复合材料的电学性能。建立了预测纳米复合材料介电常数的模型,实验值拟合良好,R接近1,残差符合正态概率图。在棕榈纤维含量为3 wt%、纤维网尺寸为150μm和纳米h-BN含量为1 wt%时,实现了1.05的优化介电常数。