This paper estimated the Arrhenius parameters as well as the pyrolysis reaction model for epoxy printed circuit boards (e-PCB) by analyzing isothermal kinetic data. This paper introduces the use of thermobalance that is capable of monitoring a weight ...
This paper estimated the Arrhenius parameters as well as the pyrolysis reaction model for epoxy printed circuit boards (e-PCB) by analyzing isothermal kinetic data. This paper introduces the use of thermobalance that is capable of monitoring a weight decrease with time under pure static condition. Three isothermal kinetic experiments were performed at 270, 275 and 280oC, that were chosen within a temperature range where main decompositions were observed from nonisothermal kinetic results. Comparing experimental reduced-time-plot (RTP) with theoretical ones, the pyrolysis reaction model of e-PCB fitted best to the Avrami-Erofeev (A2) Model. Consequently, the activation energy and pre-exponential factor were then estimated to be 141 kJ⋅mol−1and 29.9 (lnA, A : min−1), respectively.