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Development of mainly plant protein-derived plywood bioadhesives via soy protein isolate fiber self-reinforced soybean meal composites

机译:主要通过大豆蛋白分离纤维自增强大豆膳食复合材料的植物蛋白质衍生胶合板生物粘附

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摘要

Self-reinforced composites (SRCs) exhibit excellent interface compatibilities and have similar constituents for easy recycling, thereby making them competitive with traditional polymeric composites in various industrial areas. However, there is still a lack of research regarding the biodegradable plant protein-based SRCs plywood adhesives with rigid strength. In this study, the "self-gluing" concept of the binding of the soy protein isolate fibers (SPFs) network skeleton with the soybean meal (SM) matrix was explored. To avoid the SPFs' aggregation and to improve their dispersity, a batchwise feeding of SM was applied before and after the SPFs were added. The 1,2,3-propanetriol-diglycidyl-ether (PTGE) was the cross-linker, which readily formed dense physicochemical interactions with the multiple side groups (-COOH/-NH2/-OH) in both the SPFs reinforcement phase and the SM matrix. A set of SPFs addition amounts (0.5%-2.0%) were employed in order to manufacture the self-reinforced SPFs/SM/PTGE plywood adhesives, and their bonded three-layer plywood was produced for testing. The wet shear strength of the plywood bonded with the SPFs/SM/PTGE adhesives fulfilled China's interior furnishing requirements (>= 0.7 MPa, GB/T 9846-2015). The SPFs/SM/PTGE adhesive bonded plywood reached its highest wet shear strength of 1.12 MPa (1.5 wt.% SPFs addition), which was a 70% increase compared to the unmodified SM/PTGE-bonded plywood sample. The morphology, the infrared spectra, the crystallinity observations, and the thermal behaviors of the SPFs/SM/PTGE adhesives showed fine SPFs-to-SM interfacial bonding and a dense crosslink network in the SPFs/SM/PTGE adhesive systems. In this study, the "self-reinforced" concept of biodegradable plant protein-based composites was evaluated and showed a great potential to apply into the plywood adhesive systems.
机译:自增强复合材料(SRCS)表现出优异的界面兼容性,并且具有类似的成分,以便于再循环,从而使它们与各个工业区中的传统聚合物复合材料竞争。然而,仍然缺乏关于可生物降解的植物蛋白的SRCS胶合板胶粘剂具有刚性强度的研究。在这项研究中,探讨了大豆蛋白分离纤维(SPFS)网络骨架与大豆膳食(SM)基质的结合的“自胶”概念。为避免SPFS的聚集并改善它们的分散性,在加入SPF之前和之后施加分批喂养SM。 1,2,3-丙甘醇二缩水甘油醚(Ptge)是交联剂,其在SPFS增强阶段中的多侧基团(-COOH / -NH2 / -OH)易于形成致密的物理化学相互作用。 SM矩阵。采用一组SPF添加量(0.5%-2.0%)以制造自增强的SPFS / SM / PTGE胶合板粘合剂,并制备其键合的三层胶合板进行测试。胶合板与SPF / SM / PTGE粘合剂粘合的湿剪切强度实现了中国内部家具要求(> = 0.7MPa,GB / T 9846-2015)。 SPFS / SM / PTGE粘合粘合剂胶合板达到其最高湿剪切强度为1.12MPa(1.5重量%的SPF加法),与未修饰的SM / PTGE键合胶合板样品相比,增加了70%。 SPFS / SM / PTGE粘合剂的形态,红外光谱,结晶度观察和热行为在SPFS / SM / PTGE粘合系统中显示出精细的SPFS-to-SM界面粘合和致密的交联网络。在该研究中,评估了可生物降解的植物蛋白基复合材料的“自增强”概念,并显示出施加到胶合板粘合剂体系中的巨大潜力。

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