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Multiblock copolymers of PPC with oligomeric PBS: with low brittle–toughness transition temperature

机译:PPC与低聚PBS的多嵌段共聚物:脆性-韧性转变温度低

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In order to decrease the brittle–toughness transition temperature and increase the mechanical strength of poly(propylene carbonate) (PPC), a series of multiblock copolymers of poly(propylene carbonate)- multiblock -poly(butylene succinate) (PPC- mb -PBS) are designed and synthesized. ~(1) H-NMR, DOSY and GPC results demonstrate the successful synthesis of PPC- mb -PBSs with designed multiblock sequence. The thermal, crystalline and mechanical properties of these PPC- mb -PBSs are evaluated by DSC, TGA, POM, tensile and tearing testing. Experiment results demonstrate that crystallinity, thermal and mechanical properties of PPC- mb -PBSs can be readily modulated by changing the composition and block length of PPC and PBS moieties. It is found that all the prepared PPC- mb -PBSs are semi-crystalline polymers with a melting temperature at 93–109 °C and a T _(g) at around ?40 °C. Both crystallization rate and crystallinity of the multiblock copolymers increase with increasing both PBS content and PBS block length. As a consequent, the tensile strength increases with increasing PBS/PPC block ratios at room and lower temperatures. In conclusion, the amorphous PBS phase in the block copolymers acts as soft segment, endowing PPC- mb -PBS copolymers with much better flexibility than PPC at low temperature of 273 K when PPC segments are frozen.
机译:为了降低脆性-韧性转变温度并提高聚碳酸亚丙酯(PPC)的机械强度,一系列聚碳酸亚丙酯-多嵌段-聚丁二酸丁二酯(PPC-mb -PBS)的多嵌段共聚物)进行了设计和综合。 〜(1)1 H-NMR,DOSY和GPC结果证明了具有设计的多嵌段序列的PPC-mb-PBS的成功合成。通过DSC,TGA,POM,拉伸和撕裂测试评估了这些PPC-mb-PBS的热,晶体和机械性能。实验结果表明,通过改变PPC和PBS部分的组成和嵌段长度,可以很容易地调节PPC-mb -PBS的结晶度,热和机械性能。发现所有制备的PPC-mb-PBS均为半结晶聚合物,熔点在93-109°C,T _(g)在约40°C。多嵌段共聚物的结晶速率和结晶度都随着PBS含量和PBS嵌段长度的增加而增加。因此,在室温和较低温度下,抗张强度随PBS / PPC嵌段比率的增加而增加。总之,嵌段共聚物中的无定形PBS相充当软链段,使PPC-mb-PBS共聚物具有比PPC在273 K的低温下冷冻时的柔韧性要好得多的柔韧性。

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