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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Structureeproperties relations in flexible polyurethane foams containing a novel bio-based crosslinker
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Structureeproperties relations in flexible polyurethane foams containing a novel bio-based crosslinker

机译:包含新型生物基交联剂的软质聚氨酯泡沫的结构特性关系

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摘要

The structure, morphology and properties of PU foams containing the novel bio-based crosslinker 3-hydroxy-N,N-bis(2-hydroxyethyl)butanamide (HBHBA) were investigated in comparison with PU foams containing the conventional crosslinker diethanolamine (DEOA). FTIR results indicate that HBHBA increases the degree of microphase separation in the foam and hydrogen bond concentration in the hard domains, suggesting that the incorporation of HBHBA produces better ordering of hard domains as compared with DEOA-crosslinked foam. Uniquely, the tri-functional crosslinker, HBHBA, can act as a chain extender due to the presence of a low reactivity secondary hydroxyl, reducing the crosslink density of the HBHBA foam vs. that of DEOA foam. Concerning foam morphology, the lower reactivity of HBHBA tends to favor larger cell sizes and more complete cell opening as compared to the more reactive DEOA. This behavior may in turn be related to the onset of phase separation and the rate of viscosity build-up. Mechanical properties measurements indicate that the elongation at break and the tensile strength of the HBHBA foam are ~33% and 41% higher than the DEOA foam, respectively. The HBHBA foam also exhibits 40% greater tear strength and 10% greater compression strength without any loss in resilience. These results indicate that this bio-based crosslinker enhances properties and has clear potential in molded foam applications.
机译:与含有常规交联剂二乙醇胺(DEOA)的PU泡沫相比,研究了含有新型生物基交联剂3-羟基-N,N-双(2-羟乙基)丁酰胺(HBHBA)的PU泡沫的结构,形态和性能。 FTIR结果表明,HBHBA增加了泡沫中微相分离的程度,并增加了硬区域中的氢键浓度,这表明与DEOA交联泡沫相比,HBHBA的掺入产生了更好的硬区域有序性。独特的是,由于低反应性仲羟基的存在,三官能交联剂HBHBA可以充当扩链剂,从而降低了HBHBA泡沫与DEOA泡沫的交联密度。关于泡沫形态,与反应性更高的DEOA相比,HBHBA的较低反应性倾向于有利于更大的泡孔尺寸和更完整的泡孔开放。该行为反过来可能与相分离的开始和粘度增加的速率有关。力学性能测量表明,HBHBA泡沫的断裂伸长率和拉伸强度分别比DEOA泡沫高约33%和41%。 HBHBA泡沫还显示出40%的撕裂强度和10%的压缩强度,而回弹性却没有任何损失。这些结果表明,这种生物基交联剂增强了性能,并在模塑泡沫应用中具有明显的潜力。

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