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MECHANICAL PROPERTIES AND MOISTURE SENSITIVITY OF VIRGIN AND RECYCLED SOY PROTEIN-CORNSTARCH PLASTICS

机译:处女和再生大豆蛋白 - 玉米渣塑料的机械性能和湿度敏感性

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摘要

Bio-based materials such as soy protein-cornstarch plastics offer advantages in sustainability compared to fossil fuel-based resins. However, to be competitive with current commodity resins, the mechanical behavior and water resistance of these bio-based materials must be improved. Five formulations of soy protein-cornstarch plastics were compounded and injection molded. The effects of soy protein-to-cornstarch ratio, addition of sodium sulfite, addition of a titanate coupling agent, recycling and ambient relative humidity on tensile properties were evaluated. Material with a soy protein-to-cornstarch ratio of 2:3 showed the best overall tensile properties, with tensile strength of 4.8 MPa, modulus of 154 MPa and elongation at break of 120%. Titanate coupling agent also improved tensile properties. Recycling led to slightly decreased tensile performance. Higher relative humidity led to gel formation and substantial decreases in strength, modulus and elongation.
机译:与化石燃料的树脂相比,生物基材料如大豆蛋白 - 玉米渣塑料在可持续性方面提供了优势。然而,与当前商品树脂有竞争力,必须改善这些生物基材料的机械行为和耐水性。将五种大豆蛋白 - 玉米渣塑料配制配混成型。评价大豆蛋白 - 玉米淀粉比,加入亚硫酸钠,加入钛酸钠偶联剂,回收和环境相对湿度的影响。具有2:3的大豆蛋白 - 玉米淀粉比的材料显示出最佳的整体拉伸性能,拉伸强度为4.8MPa,254MPa的模量和突破120%的伸长率。钛酸盐偶联剂还改善了拉伸性质。回收导致拉伸性能略微降低。更高的相对湿度导致凝胶形成,强度,模量和伸长的显着降低。

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