用木材热解液改性苯酚甲醛树脂

IF 0.58 Q4 Materials Science
D. S. Rusakov, G. S. Varankina, O. A. Belova
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引用次数: 0

摘要

苯酚甲醛树脂改性是改进粘合剂材料生产的方向之一。利用木材加工业的废料和中间产品,特别是以木材热解液的形式,将深化资源综合利用进程。一系列研究为进一步开发和有针对性地调节木材热解液改性苯酚甲醛胶粘剂的理化性能奠定了基础。实验结果清楚地表明,添加不同比例的木材热解液(最高达 15-20%)可显著提高桦木胶合板样品的分层和弯曲强度,使其超过标准。这是由于木材热解液中的树脂酸和脂肪酸与甲醛发生了反应。树脂酸和脂肪酸融入苯酚甲醛树脂的聚合物分子中,形成空间支化结构,从而形成具有一系列新特性的聚合物。在木材-热解-液体改性苯酚甲醛粘合剂的相互作用机理中,物质的分子量依次增加,因此渗透深度也依次增加。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Modification of Phenol Formaldehyde Resins with Wood-Pyrolysis Liquid

Modification of Phenol Formaldehyde Resins with Wood-Pyrolysis Liquid

Modification of Phenol Formaldehyde Resins with Wood-Pyrolysis Liquid

One of the directions for improving the production of adhesive materials is the modification of phenol formaldehyde resins. Utilizing the waste and intermediate products from wood-processing industries, particularly in the form of wood-pyrolysis liquid, will deepen the process of comprehensive resource utilization. A body of research lays the groundwork for further developments and targeted regulation of the physicochemical properties of wood-pyrolysis liquid-modified phenol formaldehyde adhesive. The experimental results clearly show that the addition of wood-pyrolysis liquid in various fractional phases (up to 15–20%) significantly increases the delamination and bending strength of birch plywood samples beyond the standard. This is due to the resinous and fatty acids in the wood-pyrolysis liquid reacting with formaldehyde. The resinous and fatty acids integrate into the polymer molecule of the phenol formaldehyde resin, forming a spatially branched structure, leading to the formation of a polymer with a new set of properties. In the interaction mechanism of wood-pyrolysis-liquid-modified phenol formaldehyde adhesive, there is a sequential increase in the molecular weight of substances and, consequently, the depth of penetration.

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来源期刊
Polymer Science, Series D
Polymer Science, Series D Materials Science-Polymers and Plastics
CiteScore
0.80
自引率
0.00%
发文量
87
期刊介绍: Polymer Science, Series D  publishes useful description of engineering developments that are related to the preparation and application of glues, compounds, sealing materials, and binding agents, articles on the adhesion theory, prediction of the strength of adhesive joints, methods for the control of their properties, synthesis, and methods of structural modeling of glued joints and constructions, original articles with new scientific results, analytical reviews of the modern state in the field.
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