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首页> 外文期刊>Journal of Applied Polymer Science >Tuning the properties of segmented polyhydroxyurethanes via chain extender structure
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Tuning the properties of segmented polyhydroxyurethanes via chain extender structure

机译:通过链扩展器结构调整分段多羟基氨基乙烷的性质

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The influence of chain extender structure on the properties of segmented polyhydroxyurethane (PHU) was investigated with four diamine molecules: 1,4-diaminobutane, isophorone diamine, methylene bis(cyclohexyl amine), and bis(aminomethyl) norbornane. These nonisocyanate polyurethanes were synthesized with polytetramethylene oxide-based soft segment and divinyl benzene dicyclocarbonate (DVBDCC) as hard segment. They were characterized with small-angle X-ray scattering (SAXS), dynamic mechanical analysis (DMA), and tensile testing. All PHUs possess nanophase-separated morphology with interdomain spacings of 12 to 16 nm via SAXS. DMA shows that the nanophase separation is accompanied with broad interphases having a wide range of local compositions. These PHUs exhibit tan delta >= 0.30 over broad temperature ranges, indicating their potential as effective damping materials. The flow temperature (T-flow), the temperature range with tan delta >= 0.30, and the tensile properties of these PHUs are strongly affected by the molecular structure of the chain extender used in synthesis. At 50 wt % hard-segment content, values of T-flow, tensile strength, and elongation-at-break can be tuned via chain extender from 57 to 105 degrees C, 1.6 to 22.4 MPa, and 70 to 500%, respectively. Notably, PHU at 50 wt % hard-segment content, synthesized with norbornane-based chain extender exhibits the best thermal and mechanical properties with T-flow of 105 degrees C, tensile strength of 22.4 MPa, elongation-at-break of 500%, and tan delta >= 0.30 over 74 degrees C in breadth. By varying hard-segment content between 30 and 50 wt %, norbornane-based PHUs afford broad tunability in tensile strength from 0.5 to 22.4 MPa with tan delta >= 0.30 spanning temperature range as large as 85 degrees C. (C) 2017 Wiley Periodicals, Inc.
机译:用四二胺分子研究了链增长率结构对分段多羟基氨基乙烷(PHU)性质的影响:1,4-二氨基丁烷,异佛酮二胺,亚甲基双(环己基胺)和双(氨基甲基)降冰片烷。将这些非异氰酸酯聚氨酯用聚四酰胺基软链段和二乙烯基二碳酸二环酯(DVBDCC)作为硬链段合成。它们的特征在于小角度X射线散射(SAX),动态机械分析(DMA)和拉伸试验。所有PHUS都具有通过萨克斯与12至16nm的跨域间距具有12至16nm的纳比分离形态。 DMA表明,纳米相分离伴随着具有各种局部组合物的广泛差异。这些PHUS在宽温度范围内展示TAN DELTA> = 0.30,表明它们具有有效阻尼材料的潜力。流量温度(T系),温度范围与TaNδ= 0.30,并且这些PHU的拉伸性能受合成中使用的链增量剂的分子结构的强烈影响。在50wt%的硬链段内容下,可以通过从57至105℃,1.6至22.4MPa和70至500%的链增量剂调谐T流动,拉伸强度和伸长率伸长率。值得注意的是,PPU在50wt%的硬链段内容物中,用基于降冰片烷基的链增量剂合成,具有105℃,拉伸强度为22.4MPa的抗拉强度,500%的抗拉强度,500%的最佳热和机械性能。棕褐色三角洲> = 0.30以上超过74摄氏度。通过改变30至50wt%之间的硬段含量,基于降冰片烷的PHU在抗拉强度下的宽度可调性为0.5至22.4MPa,Tan Delta> = 0.30跨越温度范围大至85℃。(c)2017 Wiley期刊,Inc。

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