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Development of albumen/soy biobased plastic materials processed by injection molding

机译:通过注塑加工开发蛋白/大豆生物基塑料材料

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摘要

Biobased plastics from renewable polymers constitute a highly interesting field for relevant industrial applications such as packaging, agriculture, etc., in which thermomechanical techniques (i.e. extrusion, compression molding, etc.) are increasingly being used. In spite of the potentials of injection molding in the manufacture of shaped products it is still scarcely used with biopolymers. This study evaluates injection molding as an alternative to produce biobased materials from blends prepared in a mixing rhe-ometer, using different albumen/soy ratios and glycerol as the plasticizer. Viscoelastic measurements and DSC of protein/glycerol blends were used to select suitable processing conditions. Physicochemical properties of injection-molded probes were characterized through dynamic mechanical thermal analysis, tensile strength, water uptake and transmittance tests. Occurrence of shear-induced effects over mixing was confirmed by extractability analysis of protein concentrates and blends, particularly for soy-based systems. Both proteins and their mixtures yield injection-molded bioplastics, although showing lower mechanical properties than LDPE standards.
机译:对于诸如包装,农业等相关工业应用,由可再生聚合物制成的生物基塑料构成了非常有趣的领域,其中越来越多地使用热机械技术(即挤出,压缩成型等)。尽管在成型产品的制造中具有注射成型的潜力,但仍很少与生物聚合物一起使用。这项研究评估了注塑成型法,该方法是使用不同蛋白/大豆比例和甘油作为增塑剂的混合流变仪制备的共混物生产生物基材料的替代方法。蛋白质/甘油共混物的粘弹性测量和DSC用于选择合适的加工条件。通过动态机械热分析,抗张强度,吸水率和透射率测试来表征注塑探针的理化性质。通过对蛋白质浓缩物和混合物的可萃取性分析,特别是对于基于大豆的系统,证实了剪切引起的混合效应。蛋白质及其混合物均可生产注模生物塑料,尽管其机械性能低于LDPE标准品。

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