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Preparation Characterization and Mechanical Properties of Bio-Based Polyurethane Adhesives from Isocyanate-Functionalized Cellulose Acetate and Castor Oil for Bonding Wood

机译:异氰酸酯官能化醋酸纤维素和蓖麻油粘合木材的生物基聚氨酯胶粘剂的制备表征和力学性能

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摘要

Nowadays, different types of natural carbohydrates such as sugars, starch, cellulose and their derivatives are widely used as renewable raw materials. Vegetable oils are also considered as promising raw materials to be used in the synthesis of high quality products in different applications, including in the adhesive field. According to this, several bio-based formulations with adhesion properties were synthesized first by inducing the functionalization of cellulose acetate with 1,6-hexamethylene diisocyanate and then mixing the resulting biopolymer with a variable amount of castor oil, from 20% to 70% (wt). These bio-based adhesives were mechanically characterized by means of small-amplitude oscillatory torsion measurements, at different temperatures, and standardized tests to evaluate tension loading (ASTM-D906) and peel strength (ASTM-D903). In addition, thermal properties and stability of the synthesized bio-polyurethane formulations were also analyzed through differential scanning calorimetry and thermal gravimetric analysis. As a result, the performance of these bio-polyurethane products as wood adhesives were compared and analyzed. Bio-polyurethane formulations exhibited a simple thermo-rheological behavior below a critical temperature of around 80–100 °C depending on the castor oil/cellulose acetate weight ratio. Formulation with medium castor oil/biopolymer weight ratio (50:50 % wt) showed the most suitable mechanical properties and adhesion performance for bonding wood.
机译:如今,糖,淀粉,纤维素及其衍生物等不同类型的天然碳水化合物被广泛用作可再生原料。植物油也被认为是有前途的原料,可用于包括粘合剂领域在内的不同应用中合成高质量产品。据此,首先通过诱导乙酸纤维素与1,6-六亚甲基二异氰酸酯的官能化反应,然后将所得的生物聚合物与20%至70%的可变量蓖麻油混合,合成了几种具有粘附特性的生物基制剂。 wt)。这些生物基胶粘剂通过在不同温度下的小幅度振荡扭转测量和标准测试来机械表征,以评估张力负荷(ASTM-D906)和剥离强度(ASTM-D903)。另外,还通过差示扫描量热法和热重分析法分析了合成的生物聚氨酯制剂的热性能和稳定性。结果,比较和分析了这些生物聚氨酯产品作为木材粘合剂的性能。在大约80–100°C的临界温度以下,生物聚氨酯配方表现出简单的热流变行为,具体取决于蓖麻油/醋酸纤维素的重量比。具有中等蓖麻油/生物聚合物重量比(50:50%wt)的配方显示出最适合粘合木材的机械性能和粘合性能。

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