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Studies of PF resole/isocyanate hybrid adhesives.

机译:PF甲阶/异氰酸酯杂化胶的研究。

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摘要

Phenol-formaldehyde (PF) resole and polymeric diphenylmethane diisocyanate (PMDI) are two commonly used exterior thermosetting adhesives in the wood-based composites industry. There is an interest in combining these two adhesives in order to benefit from their positive attributes while also neutralizing some of the negative ones. Although this novel adhesive system has been reportedly utilized in some limited cases, a fundamental understanding is lacking. This research serves this purpose by investigating some of the important aspects of this novel adhesive system.; The adhesive rheological and viscometric properties were investigated with an advanced rheometer. The resole/PMDI blends exhibited non-Newtonian flow behavior. The blend viscosity and stability were dependent on the blend ratio, mixing rate and time. The adhesive penetration into wood was found to be dependent on the blend ratio and correlated with the blend viscosity. By using dynamic mechanical analysis, the blend cure speed was found to increase with the PMDI content. Mode I fracture testing of resole/PMDI hybrid adhesive bonded wood specimens indicated the dependence of bondline fracture energy on the blend ratio. The 75/25 PF/PMDI blend exhibited a high fracture energy with a fast cure speed and processable viscosity. Exposure to water-boil weathering severely deteriorated the fracture energies of the hybrid adhesive bondlines.; More detailed chemistry and morphological studies were performed with cross-polarization nuclear magnetic resonance and 13C, 15N-doubly labeled PMDI. A spectral decomposition method was used to obtain information regarding chemical species concentration and relaxation behavior of the contributing components within the major nitrogen resonance. Different urethane concentrations were present in the cured blend bondlines. Water-boil weathering and thermal treatment at elevated temperatures (e.g. >200°C) caused reduced urethane concentrations in the bondline. Solid-state relaxation parameters revealed a heterogeneous structure in the non-weathered blends. Water boil weathering caused a more uniform relaxation behavior in the blend bondline.; By conducting this research, more fundamental information regarding the PF/PMDI hybrid adhesives will become available. This information will aid in the evaluation of, and improve the potential use of PF/PMDI hybrid adhesives for wood-based composites.
机译:苯酚甲醛(PF)甲阶酚醛树脂和聚合物二苯基甲烷二异氰酸酯(PMDI)是木材复合材料行业中两种常用的外部热固性粘合剂。有兴趣将这两种粘合剂结合起来,以便从它们的积极特性中受益,同时也抵消一些消极的特性。尽管据报道在一些有限的情况下使用了这种新颖的粘合剂系统,但缺乏基本的了解。这项研究通过研究这种新型胶粘剂系统的一些重要方面来达到此目的。用高级流变仪研究了粘合剂的流变学和粘度特性。甲阶酚醛/ PMDI共混物表现出非牛顿流动性。共混物的粘度和稳定性取决于共混比,混合速率和时间。发现粘合剂渗透到木材中取决于混合比例并与混合粘度相关。通过动态力学分析,发现共混物的固化速度随PMDI含量的增加而增加。甲阶/ PMDI混合粘合的木材样品的I型断裂试验表明,粘结层断裂能与混合比有关。 75/25 PF / PMDI共混物显示出高断裂能,快速固化速度和可加工粘度。暴露于水沸腾的气候中严重破坏了混合粘合剂粘合线的断裂能。通过交叉极化核磁共振和13 C,15 N双标记的PMDI进行了更详细的化学和形态学研究。光谱分解方法用于获得有关化学物种浓度和主要氮共振中贡献成分的弛豫行为的信息。固化的共混粘合线中存在不同的氨基甲酸酯浓度。水沸腾的风化和高温下(例如> 200°C)的热处理导致粘结线中的氨基甲酸酯浓度降低。固态弛豫参数显示了非风化共混物中的异质结构。水沸腾的风化在共混粘合线上引起更均匀的松弛行为。通过进行这项研究,将获得有关PF / PMDI混合胶粘剂的更多基本信息。该信息将有助于评估和改善PF / PMDI杂化胶粘剂在木质复合材料中的潜在用途。

著录项

  • 作者

    Zheng, Jun.;

  • 作者单位

    Virginia Polytechnic Institute and State University.;

  • 授予单位 Virginia Polytechnic Institute and State University.;
  • 学科 Agriculture Wood Technology.
  • 学位 Ph.D.
  • 年度 2003
  • 页码 213 p.
  • 总页数 213
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 森林采运与利用;
  • 关键词

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