FR-2和FR-4型印刷电路板的混合动力学分析:热重分析

Anuj Thukral , Adhithiya Venkatachalapati Thulasiraman , Arun K. Vuppaladadiyam , Savan Kumar Patel , Manoj Kumar Jena , Kalpit Shah , Neha Gupta , Rahul Saha , Anuushka Pal , Parveen Saini
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引用次数: 0

摘要

研究了FR-2(层压纸增强酚醛树脂)和FR-4(玻璃纤维增强环氧树脂)废印刷电路板(wpcb)非金属组分在流动氮气惰性气氛下的非等温(5、10和20℃/min)热解。采用三种等转换动力学模型(Friedman、flynn - wall - ozawa (FWO)和Kissinger-Akahira-Sunose (KAS))来理解热解过程的动力学。热重-差热重(TG-DTG)分析表明,FR-4 NMFs在升温速率为10°C/min时,在287°C以上的质量损失发生了变化,在515°C时转化率达到95%。在FR-2 NMFs的情况下,在250-330°C和330-530°C之间观察到两个不同的脱挥发区。动力学研究表明FR-2的平均活化能为264.38 kJ/mol, FR-4的平均活化能为221.99 kJ/mol。FR-2 NMFs的热解反应机制表现为转化率(α)呈下降趋势,在α = 0.5之前为简化的三阶模型(F3),在转化率后期转为二阶扩散(D2)。对于FR-4 NMFs,反应函数f(α)在选择的转化范围内介于单个粒子上随机成核(F3)和单个粒子上随机成核(F1)之间。FR-2和FR-4 NMFs的平均ΔH分别为259.30和217.00 kJ/mol, ΔG分别为161.03和176.92 kJ/mol。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Hybrid kinetic analysis of FR-2 and FR-4 type printed circuit boards: A thermogravimetric analysis

Hybrid kinetic analysis of FR-2 and FR-4 type printed circuit boards: A thermogravimetric analysis
This study investigated the non-isothermal (5, 10, and 20 °C/min) pyrolysis of non-metallic fractions (NMFs) of the FR-2 (phenolic resin reinforced with laminated paper) and FR-4 (epoxy resin reinforced with glass fiber) type waste printed circuit boards (WPCBs), under an inert atmosphere of flowing nitrogen gas. Three iso-conversional kinetic models (Friedman, Flyn-Wall–Ozawa (FWO), and Kissinger–Akahira–Sunose (KAS) approaches) were employed to understand the kinetics of the pyrolysis process. Thermogravimetric-differential thermogravimetric (TG-DTG) analysis revealed that FR-4 NMFs displayed a shift in mass loss above 287 °C at a heating rate of 10 °C/min and reached 95% conversion at 515 °C. In the case of the FR-2 NMFs, two distinct devolatilization zones were observed between 250–330 °C and 330–530 °C. The kinetic investigation revealed mean activation energy values of 264.38 kJ/mol for FR-2 and 221.99 kJ/mol for FR-4. The pyrolysis reaction mechanism for FR-2 NMFs displayed a decreasing trend for conversion (α), which was indicative of the simplified third-order model (F3) until α = 0.5 and shifted to second-order diffusion (D2) in the later part of the conversion. For FR-4 NMFs, the reaction function f(α) is between random nucleation with three nuclei on the individual particle (F3) and random nucleation with one nucleus on the individual particle (F1) over the selected range of conversion. For the FR-2 and FR-4 NMFs, the average ΔH values were 259.30 and 217.00 kJ/mol, and ΔG values were 161.03 and 176.92 kJ/mol, respectively.
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