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首页> 外文期刊>Journal of the American Oil Chemists' Society >Soy Protein Adhesive Blends with Synthetic Latex on Wood Veneer
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Soy Protein Adhesive Blends with Synthetic Latex on Wood Veneer

机译:大豆蛋白胶粘剂与合成胶乳在木皮上的掺合

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Environmental pollution has prompted an interest in and a need for bio-based wood adhesives. Modified soy protein has shown adhesion properties similar to those of formaldehyde based adhesives. The objective of this research was to investigate the compatibility of a modified soy protein (MSP) with six commercial synthetic latex adhesives (SLAs). Four different blending ratios of MSP and SLAs were studied. Adhesion; structural change; and rheological, thermal, and morphological properties of the MSP/SLAs blends were characterized. Dry adhesion strength of MSP, SLAs and their blends were all similar with 100% wood cohesive failure. Water resistance of all six SLAs was improved by blending with MSP in terms of the wet adhesion strength. The wet adhesion strength of MSP/PBG (40/60) blends was 6.416 MPa, as compared to 4.66 MPa of pure PBG (press bond glue, urea formaldehyde based resin). Viscosity of MSP/SLAs blends was reduced significantly and reached the lowest value at 40-60% MSP. Infrared spectra, thermal properties, and morphological images indicated that chemical reactions occurred between soy protein and PBG molecules. The MSP provided some functional groups, such as carboxylic (-COOH), hydroxyl (-OH) and amino groups (-NH2), that cross-linked with hydroxymethyl groups (-CH2-OH) of PBG, and also acted as an acidic catalyst for the self-polymerization of urea formaldehyde based resin.
机译:环境污染已引起人们对生物基木材胶粘剂的兴趣和需求。改性大豆蛋白显示出与基于甲醛的粘合剂相似的粘合性能。这项研究的目的是研究改性大豆蛋白(MSP)与六种市售合成乳胶粘合剂(SLA)的相容性。研究了MSP和SLA的四种不同混合比例。附着力;结构变化;表征了MSP / SLA混合物的流变学,热学和形态学特性。 MSP,SLA及其混合物的干粘合强度均相似,木材粘合强度均为100%。通过在湿粘合强度方面与MSP混合,可改善所有六个SLA的耐水性。 MSP / PBG(40/60)共混物的湿粘合强度为6.416 MPa,而纯PBG(压接胶,脲醛基树脂)的湿粘合强度为4.66 MPa。 MSP / SLA混合物的粘度显着降低,在40-60%MSP时达到最低值。红外光谱,热学性质和形态图像表明,大豆蛋白和PBG分子之间发生了化学反应。 MSP提供了一些官能团,例如羧基(-COOH),羟基(-OH)和氨基(-NH2),它们与PBG的羟甲基(-CH2-OH)交联,并且还充当酸性基团脲醛基树脂自聚合的催化剂。

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