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Thermal study of phenol-formaldehyde resin modified with cashew nut shell liquid

机译:腰果壳油改性酚醛树脂的热学研究

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摘要

In this study, an experimental phenol-formaldehyde resin with 20% phenol replacement by cashew nut shell liquid (CNSL) was studied and compared with a conventional phenol-formaldehyde resin synthesized totally from petrochemical raw materials. The resins were characterized with standard lab analysis for their physicochemical specifications, while their thermal properties were studied with thermogravimetric analysis (TGA) and differential scanning calorimetry (DSC). For comparison reasons pure CNSL and wood were also included in the TGA study. A DSC study conducted both for the neat resins and the system wood-resin as to examine the effect of wood on the curing performance of the resins in the real time conditions of their usage at the wood-based panels industry. The adhesion strength of these resins was investigated by their application in plywood production. The plywood panels were tested for their shear strength and wood failure performance while their free formaldehyde emissions were determined with the desiccator method. It was proved that although the neat CNSL modified PF resin (PCF) cures at longer time and higher temperature than a conventional PF resin, wood affects it more significantly, resulting in the evening of their curing performance. This is a novel finding that manifests the possibility of replacing a convention PF resin by a CNSL modified one in the plywood production, without changing any of their production conditions and with improvement to their overall properties.
机译:在这项研究中,研究了一种用腰果壳液(CNSL)替代20%苯酚的实验性酚醛树脂,并将其与完全由石化原料合成的常规酚醛树脂进行了比较。通过标准实验室分析对树脂的理化指标进行了表征,同时通过热重分析(TGA)和差示扫描量热法(DSC)研究了其热性能。出于比较的原因,TGA研究中还包括了纯CNSL和木材。 DSC研究针对纯树脂和系统木质树脂进行了研究,以检验木材在人造板工业中使用的实时条件下木材对树脂固化性能的影响。通过在胶合板生产中的应用研究了这些树脂的粘合强度。测试了胶合板的剪切强度和木材破坏性能,同时使用干燥器方法测定了其游离甲醛的释放量。事实证明,尽管纯净的CNSL改性PF树脂(PCF)与常规PF树脂相比可在更长的时间和更高的温度下固化,但木材对它的影响更大,导致其固化性能不佳。这是一个新颖的发现,表明在胶合板生产中可以用CNSL改性的一种替代常规PF树脂来替代常规PF树脂,而无需改变其生产条件,也不会改善其整体性能。

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