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The incorporation of corn- and soybean-based materials into plywood adhesives.

机译:将玉米和大豆基材料掺入胶合板粘合剂中。

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摘要

A cornstarch-derived mixed methyl glucoside product, Sta-Meg{dollar}spcircler{dollar} 100 (MeG) and soy molasses demonstrated potential as effective extenders in phenolic resol resin-based adhesives used for bonding southern yellow pine into exterior grade plywood. Soy protein products showed modest potential.; By replacing up to 25% of extended glue mixes with MeG or replacing 12% of resin solids, adhesive performance matched or surpassed controls. An array of MeG modified resins was synthesized from 2.1-2.7 F/P (formaldehyde/phenol) and 5-20% MeG as resin solids replacement. By co-increasing MeG and F/P, resins with control-like properties were synthesized up to maximum modification. All resins performed well in extended glues, bonding 8% moisture (m.c.) veneer with 60 minute assembly. With 15 minute assembly, controls were undercured, but co-increasing MeG and F/P restored performance. Resins were synthesized with 35% and 50% MeG as phenol replacement in 1.7 and 2.1 F/P control formulations, by increasing reaction temperatures 5{dollar}spcirc{lcub}-{rcub}10spcirc{dollar}C. Gel time and free formaldehyde were comparable to controls. All glue mixes performed well at full cure with 9% m.c. veneer. At reduced hot press, MeG-modification accelerated cure, with a 35% optimum.; Soy whey, soy molasses, defatted soy flour, soy protein concentrate, soy protein isolate, and spent soy hulls were screened as 10% replacement of resin binder polymer in extended glues on 7.5% m.c. veneer. None of the glues matched control, but hulls performed best. Flour, concentrate, and isolate showed some adhesive ability. Whey and molasses performed like fillers. Molasses, flour, concentrate, and isolate, were synthesized into resins as 10% phenol replacement. Resins were similar to controls except for thixotropy and reduced formaldehyde of molasses resin. In bonding moist veneers, molasses resins accelerated cure, while maintaining full cure performance. Isolate accelerated wet strength development. A series of phenol replacement molasses-modified resins was prepared to 50%. Resins had increasing solids and decreasing free formaldehyde to 40% SM, with peculiar thixotropyldose response. Molasses resins showed cure acceleration over 10-30% range, but full cure bonding fell at 30%.
机译:玉米淀粉衍生的混合甲基葡糖苷产品Sta-Meg {dollar} spcircler {dollar} 100(MeG)和大豆糖蜜显示出作为酚醛可熔酚醛树脂基粘合剂的有效增量剂的潜力,该粘合剂用于将南方黄松粘合到外部级胶合板中。大豆蛋白产品显示出中等潜力。通过用MeG替代多达25%的扩展胶水混合物或替代12%的树脂固体,胶粘剂性能达到或超过了对照。由2.1-2.7 F / P(甲醛/苯酚)和5-20%的MeG合成了一系列MeG改性树脂作为树脂固体替代物。通过共同增加MeG和F / P,可以合成具有类似控制性能的树脂,最大程度地提高其改性率。所有树脂在扩展胶中的性能都很好,在60分钟的组装过程中粘合了8%水分(m.c.)单板。组装15分钟后,控制能力不足,但同时提高了MeG和F / P恢复了性能。通过将反应温度提高5℃至10℃,合成了在1.7和2.1 F / P对照配方中用35%和50%MeG作为苯酚替代物的树脂。胶凝时间和游离甲醛与对照相当。所有胶料混合物在9%m.c的完全固化下表现良好。单板。在降低的热压下,MeG改性可加速固化,最佳值为35%。筛选了乳清,大豆糖蜜,脱脂大豆粉,大豆蛋白浓缩物,大豆蛋白分离物和废大豆壳,作为在7.5%m.c的扩展胶中10%替代树脂粘合剂聚合物的替代品。单板。没有一种胶与控制相匹配,但是船体表现最佳。面粉,浓缩物和分离物显示出一定的粘合能力。乳清和糖蜜的表现像填料。将糖蜜,面粉,浓缩物和分离物合成为10%苯酚替代品的树脂。树脂与对照相似,除了触变性和糖蜜树脂的甲醛减少量。在粘合湿板时,糖蜜树脂可加快固化速度,同时保持充分的固化性能。隔离加速的湿强度发展。制备了一系列苯酚替代糖蜜改性树脂至50%。树脂具有增加的固含量和减少的游离甲醛至40%SM,具有特殊的触变剂量反应。糖蜜树脂在10-30%的范围内显示出加速固化作用,但完全的固化粘合力下降了30%。

著录项

  • 作者

    Karcher, Lawrence P.;

  • 作者单位

    University of Illinois at Urbana-Champaign.;

  • 授予单位 University of Illinois at Urbana-Champaign.;
  • 学科 Chemistry Polymer.; Agriculture Wood Technology.
  • 学位 Ph.D.
  • 年度 1997
  • 页码 216 p.
  • 总页数 216
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 高分子化学(高聚物);森林采运与利用;
  • 关键词

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