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Design and Performance of Polyurethane Elastomers Composed with Different Soft Segments

机译:用不同软段组成的聚氨酯弹性体的设计和性能

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摘要

Thermoplastic polyurethane elastomers (TPUs) are widely used in a variety of applications as a result of flexible and superior performance. However, few scholars pay close attention on the design and synthesis of TPUs through the self-determined laboratory process, especially on definite of chemical structures and upon the influence on properties. To investigate the properties of synthesized modifier based on chemical structure, firstly each kind of unknown structure and composition ratio of TPUs was determined by using a new method. Furthermore, the thermal characteristics and mechanical properties of modifiers were exposed by thermal characteristics and mechanics performance tests. The experimental results indicate that TPUs for use as an asphalt modifier can successfully be synthesized with the aid of semi-prepolymer method. The linear backbone structure of TPUs with different hard segment contents were determined by micro test methods. The polyester-based TPUs had thermal behavior better than the polyether-based TPUs; conversely, the low temperature performance of polyether-based TPUs was superior. Most importantly, it was found that the relative molecular mass of TPUs exhibited a weak effect on the mechanical properties, whereas the crystallinity of hard segment showed a significant influence on the properties of TPUs.
机译:热塑性聚氨酯弹性体(TPU)由于灵活且优越的性能而广泛用于各种应用中。然而,很少有学者通过自我决定的实验室过程,特别是通过自我决定的实验室过程来密切关注TPU的设计和合成,特别是在肯定的化学结构和对性质的影响时。为了研究基于化学结构的合成改性剂的性能,首先通过使用新方法确定TPU的各种未知结构和组成比。此外,通过热特性和力学性能测试暴露改性剂的热特性和机械性能。实验结果表明,用作沥青改性剂的TPU可以通过半预聚物方法成功地合成。具有不同硬链段内容物的TPU的线性骨干结构由微量试验方法确定。基于聚酯的TPU具有比聚醚的TPU更好的热行为;相反,基于聚醚的TPU的低温性能优异。最重要的是,发现TPU的相对分子量对机械性能效果薄弱,而硬区段的结晶度对TPU的性质显示出显着影响。

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