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Preparation of Soy-Based Adhesive Enhanced by Waterborne Polyurethane: Optimization by Response Surface Methodology

机译:水性聚氨酯增强大豆基胶粘剂的制备:响应面法的优化

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Response surface methodology was used to optimize the preparation conditions of soy-based adhesives (SBAs) in this work. The parameters such as the effects and interactions of waterborne polyurethane (WPU) addition level (X1), temperature (X2), and time (X3) on wet shear strength (Y) were investigated. The regression model for SBA preparation was significant (). The coefficient of determination (R2) of this model was to be 0.9256. According to the results, WPU addition level (X1) had a significant influence on the wet shear strength, whereas reaction temperature (X2) and reaction time (X3) were not significant. The optimal preparation conditions of SBA were 12?wt.% WPU addition level for 101?min at 76°C. Under the optimal conditions, the wet shear strength was 1.07?±?0.08?MPa, which was in good agreement with the model predicted value. An analysis of FTIR spectra of WPU, soy flour, and soy-based adhesive further confirmed the validity of the model.
机译:在这项工作中,使用响应表面方法优化了大豆基胶粘剂(SBA)的制备条件。研究了水性聚氨酯(WPU)添加量(X1),温度(X2)和时间(X3)对湿剪切强度(Y)的影响和相互作用等参数。 SBA准备的回归模型具有显着性()。该模型的确定系数(R2)为0.9256。根据结果​​,WPU添加量(X1)对湿剪切强度有显着影响,而反应温度(X2)和反应时间(X3)不显着。 SBA的最佳制备条件是在76°C下101%/ min的WPU添加量为12wt。%。在最佳条件下,湿抗剪强度为1.07≤±0.08≤MPa,与模型预测值吻合良好。对WPU,大豆粉和大豆基胶粘剂的FTIR光谱分析进一步证实了该模型的有效性。

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