首页> 外文期刊>Journal of Polymers and the Environment >Wet Strength and Water Resistance of Modified Soy Protein Adhesives and Effects of Drying Treatment
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Wet Strength and Water Resistance of Modified Soy Protein Adhesives and Effects of Drying Treatment

机译:改性大豆蛋白胶粘剂的湿强度和耐水性及干燥处理的影响

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摘要

Soy protein isolate (SPI) was modified using sodium dodecyl sulfate (SDS) and guanidinc hy-drochloride (GuHCl). Adhesion performance of the modified SPI on fiberboard was studied. The Water-soluble mass of the modified SPI adhesives was examined following modified ASTM D5570. The SDS-modified SPI containing 91% protein had a water-soluble mass of 1.7%. To be considered a water-resistant adhesive, the water-soluble mass of adhesive should be less than 2%. The wet shear strength test showed 100% cohesive failure within fiberboard, indicating that the modified SPI has good water resistance. The effect of drying treatment on adhesion performance of the SDS-modified SPI on fiberboard was then investigated. Drying treatment significantly affected the final adhesion performance. Shear strength did not change much, but the percentage of cohesive failure within fiberboard increased markedly as drying temperature increased. All the unsoaked, soaked, and wet specimens glued by the adhesives treated at 70℃ or 90℃ had 100% cohesive failure within fiberboard. Viscosity also increased greatly with an increase in drying temperature. This information will be useful in developing low-cost adhesive processing system in the future.
机译:使用十二烷基硫酸钠(SDS)和盐酸胍(GuHCl)修饰大豆分离蛋白(SPI)。研究了改性SPI在纤维板上的粘合性能。按照改性的ASTM D5570检查改性的SPI粘合剂的水溶性物质。含有91%蛋白质的SDS修饰SPI的水溶性质量为1.7%。被认为是耐水粘合剂,粘合剂的水溶性质量应小于2%。湿剪切强度测试表明纤维板内部100%的内聚破坏,表明改性SPI具有良好的耐水性。然后研究了干燥处理对SDS改性SPI在纤维板上的粘合性能的影响。干燥处理显着影响最终的粘合性能。剪切强度变化不大,但随着干燥温度的升高,纤维板内聚力破坏的百分比显着增加。在70℃或90℃下处理过的所有未浸湿,浸湿的试样均在纤维板内部发生100%的内聚破坏。随着干燥温度的升高,粘度也大大增加。该信息将在将来开发低成本的粘合剂处理系统时有用。

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