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首页> 外文期刊>Polymer Testing >Rheological, mechanical and morphological properties of poly(butylene adipate-co-terephthalate)/thermoplastic starch blends and its biocomposite with babassu mesocarp
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Rheological, mechanical and morphological properties of poly(butylene adipate-co-terephthalate)/thermoplastic starch blends and its biocomposite with babassu mesocarp

机译:聚(丁烯己二酸丁二醇酯 - 对苯二甲酸盐)/热塑性淀粉混合物的流变,机械和形态学性质及其用Babassu Mesocarp的生物复合材料

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Poly (butylene adipate-co-terephthalate)/thermoplastic starch (PBAT/TPS) blends and a PBAT/TPS/babassu mesocarp biocomposite were prepared by melt mixing in a torque rheometer at different processing temperatures (150, 170, 190 degrees C). Tensile test specimens were obtained by hot pressing. Torque rheometry indicated that molecular weight decreased with increasing processing temperature and TPS content in the blend, and this decrease was more intense with babassu mesocarp addition. PBAT mechanical properties were hardly affected by processing temperature while those of the blends decreased with thermoplastic starch content. Overall, increasing processing temperature led to lower mechanical properties, particularly at 190 degrees C. Fiber addition led to higher modulus and lower strength and elongation at break than the corresponding blend at all processing temperatures investigated. The differences observed on blend morphology as a function of processing temperature were minor. Some adhesion between TPS and PBAT is observed but adhesion between polymer matrix and babassu fibers is essentially non-existent.
机译:通过在不同加工温度(150,170,190℃)的扭矩流变仪中,通过在扭矩流变仪(150,170,190c)中,通过在扭矩流变仪中混合来制备聚(丁烯己二酸丁二醇酯)/热塑性淀粉(PBAT / TPS)共混物和PBAT / TPS / Babassu Mesocarp生物复合。通过热压获得拉伸试样。扭矩流变学表明,随着加入温度和混合物中的TPS含量的增加,分子量降低,并且这种减少更加强烈地对Babassu Mesocarp添加。 PBAT机械性能几乎不受加工温度影响,而共混物的含量降低,则用热塑性淀粉含量降低。总的来说,加工温度的增加导致机械性能较低,特别是在190摄氏度下,纤维加法导致更高的模量和更低的强度,并且在所有加工温度下的相应混合物处的相应混合物进行断裂。在混合形态观察到作为加工温度的函数观察到的差异是较小的。观察到TPS和PBAT之间的一些粘附,但聚合物基质和Babassu纤维之间的粘附基本上是不存在的。

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