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Investigating the Properties and Structure of Polyurethane Elastomers with Monoethylene Glycol Chain Extender

机译:用一甲基乙二醇链增量剂研究聚氨酯弹性体的性能和结构

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The effect of monoethylene glycol (mEG) acting as chain extender in polypropylene glycol (PPG-4000) and 4,4'-diphenylmethane diisocyanate (MDI) reaction was investigated. Polyurethane elastomers (PUR) were changed from flexible to rigid materials by varying the mEG content. Results show that Shore A and D hardness values trend to increase with increasing mEG content. It appears that increasing the chain extender content increases the hard segment content in the polyurethane structure. Moreover, increasing the mEG content increases Young's modulus and the tensile strength of PUR, while elongation at break decreases. The chemical structure of the hard segment of PUR was characterized by Infrared (IR) spectroscopy. IR spectra exhibited the bands typical for PUR consisting of-NH, CH2- and C=O groups. The spectra reveal a few interactions between the polymeric chains that appear to be responsible for the shift of transmittance peak and decrease of some peak intensity. This may be due to the hard segment aggregating more to form domains in the PUR when mEG content was increased.
机译:研究了单乙二醇(MEG)作为聚丙二醇(PPG-400)中的链增量剂的单乙二醇(MEG)的作用和4,4'-二苯基甲烷二异氰酸酯(MDI)反应。通过改变MEG含量,聚氨酯弹性体(PUR)从柔性到刚性材料改变。结果表明,随着MEG含量增加,岸A和D硬度值趋势增加。似乎增加链扩展剂含量增加了聚氨酯结构中的硬段内容。此外,增加MEG含量增加了杨氏模量和PUR的拉伸强度,而断裂处的伸长率降低。用红外线(IR)光谱表征Pur的硬链段的化学结构。 IR光谱表现出典型的条带,用于用NH,CH 2和C = O组组成。光谱揭示了聚合物链之间的几个相互作用,该相互作用似乎负责透射率峰值的偏移和一些峰强度的降低。这可能是由于当MEG含量增加时,由于硬链段更多地在pur中形成域。

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