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Investigation on the Synthesis Process of Bromoisobutyryl Esterified Starch and Its Sizing Properties: Viscosity Stability Adhesion and Film Properties

机译:溴代异丁酰酯化淀粉的合成工艺及其上浆性能的研究:粘度稳定性粘附性和薄膜性能

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摘要

To confirm the suitable synthesis process parameters of preparing bromoisobutyryl esterified starch (BBES), the influences of the synthesis process parameters—amount of 2-bromoisobutyryl bromide (BIBB), amount of catalyst (DMAP), reaction temperature and reaction time—upon the degree of substitution (DS) were investigated. Then, to produce a positive effect on the properties of graft copolymers of BBES prepared in the near future, a series of BBES samples were successfully prepared, and their sizing properties, such as apparent viscosity and viscosity stability, adhesion, and film properties, were examined. The BBES granules were characterized by Fourier transform infra-red spectroscopy and scanning electron microscopy. The adhesion was examined by determining the bonding forces of the sized polylactic acid (PLA) and polyester roving. The film properties were investigated in terms of tensile strength, breaking elongation, degree of crystallinity, and cross-section analysis. The results showed that a suitable synthesis process of BBES was: reaction time of 24 h, reaction temperature of 40 °C, and 0.23 in the molar ratio of 4-dimethylaminopyridine to 2-bromoisobutyryl bromide. The bromoisobutyryl esterification played the important roles in the properties of the starch, such as paste stabilities of above 85% for satisfying the requirement in the stability for sizing, improvement of the adhesion to polylactic acid and polyester fibers, and reduction of film brittleness. With rising DS, bonding forces of BBES to the fibers increased and then decreased. BBES (DS = 0.016) had the highest force and breaking elongation of the film. Considering the experimental results, BBES (DS = 0.016) showed potential in the PLA and polyester sizing, and will not lead to a negative influence on the properties of graft copolymers of BBES.
机译:为了确认制备溴代异丁酰酯化淀粉(BBES)的合适合成工艺参数,合成工艺参数对2-溴异丁酰溴(BIBB)的量,催化剂的量(DMAP),反应温度和反应时间的影响程度。研究了取代度(DS)。然后,为了对近期制备的BBES的接枝共聚物的性能产生积极影响,成功制备了一系列BBES样品,并确定了它们的上浆性能,如表观粘度和粘度稳定性,附着力和薄膜性能。检查。通过傅立叶变换红外光谱和扫描电子显微镜对BBES颗粒进行表征。通过确定施胶后的聚乳酸(PLA)和聚酯粗纱的粘合力来检查粘合力。根据拉伸强度,断裂伸长率,结晶度和横截面分析研究了膜的性能。结果表明,适宜的BBES合成工艺为:反应时间为24 h,反应温度为40°C,且4-二甲基氨基吡啶与2-溴异丁酰基溴的摩尔比为0.23。溴异丁酰基酯化在淀粉的性质中起着重要的作用,例如糊状稳定性高于85%,以满足对上浆稳定性的要求,改善了对聚乳酸和聚酯纤维的粘合力,并降低了膜的脆性。随着DS的增加,BBES与纤维的结合力先增加后降低。 BBES(DS = 0.016)具有最高的薄膜力和断裂伸长率。考虑到实验结果,BBES(DS = 0.016)在PLA和聚酯上浆中显示出潜力,不会对BBES接枝共聚物的性能产生负面影响。

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