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Enhancement in Thermal Stability of Polyoxymethylene (POM)-Based Biopolymer Blend Materials

机译:增强基于聚甲醛(POM)的生物聚合物共混材料的热稳定性

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In this study, we demonstrate the enhancement in thermal stability of polyoxymethylene (POM)-based biopolymer blend materials. Polyoxymethylene (POM)/Polylactic acid (PLA) blends have been used as alternative biopolymer materials for supporting environmental problems with thermal stability feature. The effects on POM biopolymer blend materials with a controlled PLA amount in their compositions under various injection conditions, were investigated by thermogravimetric analysis, dynamic mechanical analysis, and differential scanning calorimetry. The POM/PLA biopolymer blend materials showed POM phase acted as a homogeneous nucleating site for increasing PLA crystallization, which improves storage modulus of the blend materials. The decomposition temperatures of POM/PLA biopolymer blends tend to shift around 30 ˚ C - 50 ˚ C lower compared to the decomposition temperatures of PLA. Thus, the decomposition temperature behavior of POM/PLA blends seems to be closer to POM. The suitable ratio in POM70/PLA30 resulted in the high strength of the blend materials. The POM/PLA biopolymer blend material was tested at various injection speeds and good miscibility was obtained at an injection speed of 100 mm/s. This enhancement of thermal stability in POM/PLA blend materials should be useful in the development of high-performance bio-based thermoplastic materials.
机译:在这项研究中,我们证明了基于聚甲醛(POM)的生物聚合物共混材料的热稳定性增强。聚甲醛(POM)/聚乳酸(PLA)混合物已用作替代生物聚合物材料,以支持具有热稳定性特征的环境问题。通过热重分析,动态力学分析和差示扫描量热法研究了在各种注入条件下,PLA量受控制的POM生物聚合物共混物材料的影响。 POM / PLA生物聚合物共混物材料显示POM相充当了增加PLA结晶的均相成核位点,从而提高了共混物的储能模量。 POM / PLA生物聚合物共混物的分解温度倾向于在30˚附近变化。 C-50˚与PLA的分解温度相比,C低。因此,POM / PLA共混物的分解温度行为似乎更接近POM。在POM70 / PLA30中合适的比例导致共混材料的高强度。在各种注射速度下测试POM / PLA生物聚合物共混材料,并在100 mm / s的注射速度下获得良好的混溶性。 POM / PLA共混材料中热稳定性的这种增强应在开发高性能生物基热塑性材料中有用。

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