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首页> 外文期刊>Polymer Degradation and Stability >Thermal-oxidative aging behaviors of shape memory nitrile butadiene rubber composite with dual crosslinking networks
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Thermal-oxidative aging behaviors of shape memory nitrile butadiene rubber composite with dual crosslinking networks

机译:双交联网络的形状记忆丁二烯橡胶复合材料热氧化老化行为

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Inspired by natural materials, sacrificial bonds have been successfully applied in the design of flexible shape memory polymers (SMPs). However, thermal oxidative stability of these SMPs is worth to be concerned because it is inevitable for the applications. Herein, model shape memory rubber composite was prepared by adding ZnCl_2 and sulfur into nitrile butadiene rubber (NBR). Dual crosslinking networks with sacrificial bonds, composed of Zn~(2+)-CN coordination bonds, was constructed in NBR composite, which endowed itself a good shape memory property in air, water and even oil. Through 20-day thermal oxidation at 100°C, Zn~(2+)-CN coordination bonds were partially dissociated and ZnCl_2 agglomerations were gradually dissolved into rubber matrix. The growth of covalent crosslinking density accompanied with chains scission during aging. Excessive growth in covalent crosslinking density and the loss of coordination bonds induced a rapid ductile-brittle transition of NBR composite in mechanical tests. Ruptured chains developed an additional relaxation with Zn~(2+) ions to broaden glassy transition of rubber matrix through aging, which increased the shape fixing ratio of NBR composite and descended its recovery ratio. Moreover, the shape recovery processes were obviously slowed down owing to aging. These novel findings reveal that thermal-oxidative aging processes change the architecture of dual crosslinking networks and affect shape memory behaviors of modeled rubbers which are practically useful for the lifetime of their products.
机译:受天然材料的启发,牺牲键已成功应用于柔性形状记忆聚合物(SMPS)的设计。然而,这些SMP的热氧化稳定性值得关注,因为应用程序是不可避免的。这里,通过将ZnCl_2和硫加入丁腈丁二烯橡胶(NBR)中制备模型形状记忆橡胶复合物。具有由Zn〜(2 +) - CN配位键组成的牺牲键的双交联网络,在NBR复合材料中构建,其在空气,水甚至油中赋予了良好的形状记忆性能。通过在100℃下的20天热氧化,部分解离Zn〜(2 +) - CN配位键,ZnCl_2附聚物逐渐溶解成橡胶基质。在老化期间,共价交联密度的生长伴随着链子释放。共价交联密度的过度生长和协调键的丧失诱导机械试验中NBR复合材料的快速延性转变。破裂链与Zn〜(2+)离子进行了额外的弛豫,以通过老化扩大橡胶基质的玻璃状过渡,这增加了NBR复合材料的形状固定比并降下了其恢复比。此外,由于老化,形状恢复过程显然减速。这些新颖的发现表明,热氧化老化过程改变了双交联网络的结构,并影响模型橡胶的形状记忆行为,这些橡胶的形状记忆行为几乎可用于其产品的寿命。

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