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首页> 外文期刊>Emerging materials research >Influence of glutaraldehyde on dynamic properties of poly(vinyl alcohol) polymer
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Influence of glutaraldehyde on dynamic properties of poly(vinyl alcohol) polymer

机译:戊二醛对聚乙烯醇聚合物动力学性能的影响

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This study investigated the dynamic mechanical properties of poly(vinyl alcohol) (PVA; (CH2CH(OH))(n)) cross-linked with glutaraldehyde (GA; OHC(CH2)(3)CHO). The cross-linked polymer was prepared by using a conventional casting technique and then treated with sulfuric acid (H2SO4) for 24 h. The flexural properties during static and dynamic modes were studied using a three-point bending condition. The static flexural properties are improved with the addition of 30% GA in PVA, with higher value of strain. It was observed that the dynamic mechanical properties of PVA improved significantly with an increase in cross-linking percentage. The storage and loss moduli increased drastically with the addition of the cross-linker up to 20%, and marginal changes occurred with further addition of the cross-linker. The fracture behavior was transformed from ductile to brittle for more than 20% cross-linker. Shifting of the rubber region and liquid region with higher temperatures was observed in storage and loss modulus plots. Improvement in the adhesion factor, cross-linking density and effectiveness was observed for GA up to 25%. The test duration was estimated using the Williams-Landel-Ferry model for different temperatures. The major changes were in the modulus in the rubbery plateau region. The cross-linked polymer had much greater storage and loss moduli, indicating a closer network structure and higher stiffness.
机译:这项研究调查了与戊二醛(GA; OHC(CH2)(3)CHO)交联的聚乙烯醇(PVA;(CH2CH(OH))(n))的动态力学性能。通过使用常规流延技术制备交联的聚合物,然后用硫酸(H2SO4)处理24小时。使用三点弯曲条件研究了静态和动态模式下的弯曲特性。通过在PVA中添加30%GA可以改善静态挠曲性能,并具有较高的应变值。观察到,随着交联百分数的增加,PVA的动态力学性能显着提高。随着交联剂的添加高达20%,储能和损耗模量急剧增加,并且随着交联剂的进一步添加发生边际变化。对于超过20%的交联剂,断裂行为从韧性转变为脆性。在存储和损耗模量图中观察到橡胶区域和液体区域随温度的变化。对于GA,观察到粘附因子,交联密度和有效性的改善高达25%。使用Williams-Landel-Ferry模型估算了不同温度下的测试持续时间。主要变化是橡胶高原区域的模量。交联的聚合物具有更大的储能和损耗模量,表明更紧密的网络结构和更高的刚度。

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