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首页> 外文期刊>RSC Advances >Effect of uniaxial pre-stretching on the microstructure and mechanical properties of poly[(ethylene oxide)-block-(amide-12)]-toughened poly(lactic acid) blend
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Effect of uniaxial pre-stretching on the microstructure and mechanical properties of poly[(ethylene oxide)-block-(amide-12)]-toughened poly(lactic acid) blend

机译:单轴预拉伸对聚[(环氧乙烷)-嵌段-(酰胺-12)]-增韧聚乳酸混合物的微观结构和力学性能的影响

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Highly oriented poly(lactic acid) (PLA)/20 wt% poly[(ethylene oxide)-block-(amide-12)] (PEBA) blends were prepared via uniaxial pre-stretching technology at 60?°C and 25 °C to improve the mechanical properties of PLA. For the pre-stretching process at 60 °C, the tensile strength and modulus of the pre-stretched PLA/PEBA blend dramatically increased with the increasing pre-stretching ratio (PSR), whereas the elongation at break for all the pre-stretched specimens was much higher than that of the neat PLA, suggesting that PEBA had an excellent toughening effect for PLA under uniaxial pre-stretching. The integrated morphological and structural analyses based on scanning electron microscopy (SEM) and wide-angle X-ray diffraction (WAXD) indicated that the amorphous PLA phase started to develop orientation, mesophase, and even defective α crystal as parts of the key structure from the strengthening and stiffening effect by pre-stretching. Compared to the pre-stretching process at 60 °C, the strengthening and stiffening effect was abated for the blend pre-stretched at 25 °C. Moreover, the elongation at break significantly decreased with the increasing PSR, indicating that the pre-stretched blend in the hot pre-stretching process (60 °C) had more outstanding toughness than that in the cold pre-stretching process (25 °C). The possible reason for this is that the crack and pore defects formed during the pre-stretching process at 25 °C severely restricted the improvement of the mechanical properties of the blend. The thermal behavior of the pre-stretched blend tested by differential scanning calorimetry (DSC) showed that on increasing the PSR, glass transition temperature increased, cold-crystallization temperature decreased, and the degree of crystallinity increased, which further demonstrated the formation of the orientation or crystallization by pre-stretching.
机译:通过通过制备高度取向的聚乳酸(PLA)/ 20 wt%聚[(环氧乙烷)-嵌段-(酰胺-12)](PEBA)共混物60°C和25°C的单轴预拉伸技术可改善PLA的机械性能。对于60°C的预拉伸过程,预拉伸的PLA / PEBA共混物的拉伸强度和模量随着预拉伸比(PSR)的增加而显着增加,而所有预拉伸样品的断裂伸长率明显高于纯PLA,表明PEBA在单轴预拉伸下对PLA具有出色的增韧效果。基于扫描电子显微镜(SEM)和广角X射线衍射(WAXD)的综合形态学和结构分析表明,非晶PLA相开始形成取向,中间相乃至缺陷α晶体,这是其关键结构的一部分。通过预拉伸来增强和增强效果。与在60°C下进行预拉伸过程相比,在25°C下进行预拉伸的共混物的增强和硬化效果有所减弱。此外,断裂伸长率随PSR的增加而显着降低,这表明热预拉伸过程(60°C)中的预拉伸混合物比冷预拉伸过程(25°C)中具有更出色的韧性。 。其可能的原因是在25°C的预拉伸过程中形成的裂纹和孔缺陷严重限制了共混物机械性能的提高。通过差示扫描量热法(DSC)测试的预拉伸共混物的热行为表明,随着PSR的增加,玻璃化转变温度升高,冷结晶温度降低,结晶度提高,这进一步证明了取向的形成。或通过预拉伸结晶。

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