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Influence of sorbitol on mechanical and physico-chemical properties of soy protein-based bioplastics processed by injection molding

机译:山梨醇对注射成型大豆蛋白基生物塑料力学和物理化学性能的影响

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Soy Protein Isolate (SPI) has been evaluated as useful candidate for the development of protein-based bioplastic materials processed by injection molding. The influence of sorbitol (SB) as plasticizer in mechanical properties and water uptake capacity was evaluated in SPI-based bioplastics. A mixing rheometer that allows monitoring torque and temperature during mixing and a small-scale-plunger-type injection molding machine were used to obtain SPI/Plasticizer blends and SPI-based bioplastics, respectively. Dynamic measurements were carried out to obtain mechanical spectra of different bioplastics. Moreover, the mechanical characterization was supplemented with uniaxial tensile tests. Additionally, the influence of SB in water uptake capacity was also evaluated. The introduction of SB leads to increase the rigidity of bioplastics as well as the water uptake capacity after 24h, however it involves a decrease in strain at break. Final bioplastics are plastic materials with both adequate properties for the substitution of conventional petroleum plastics and high biodegradability.
机译:大豆分离蛋白(SPI)已被评估为开发通过注塑成型加工的基于蛋白质的生物塑料的有用候选材料。在基于SPI的生物塑料中评估了山梨糖醇(SB)作为增塑剂对机械性能和吸水能力的影响。使用可在混合过程中监控扭矩和温度的混合流变仪以及小型柱塞式注塑机,分别获得SPI /增塑剂混合物和SPI基生物塑料。进行动态测量以获得不同生物塑料的机械光谱。此外,机械特性得到单轴拉伸试验的补充。此外,还评估了SB对吸水能力的影响。 SB的引入可提高生物塑料的刚性以及24小时后的吸水能力,但是它会降低断裂应变。最终的生物塑料是既具有足以替代常规石油塑料的性能又具有高生物降解性的塑料。

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