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Ageing of thermoplastic umbilical hose materials used in a marine environment Ⅱ- Nylon

机译:海洋环境中使用的热塑性脐带材料的老化Ⅱ-尼龙

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In this study, measurements of nylon 11 pipes subjected to ageing at 40℃, 70℃ and 100℃ in water, methanol and xylene using both a constant pressure of 200 bar and a cyclic pressure regime are reported. Gravimetric measurements indicate the rate at which the solvent is absorbed by the polymer, and differential scanning calorimetry follows the changes in the crystallinity as the materials are aged. Dramatic changes in the tensile properties are observed when the pipes are subjected to high pressure and reflect a relaxation of the stress in the matrix introduced by the quenching process when the pipes were extruded. The magnitude of the change varies with the fluid and reflects their relative abilities to be absorbed by the polymer. Measurements of the relative viscosity for the polymer indicated that in the case of water and methanol, hydrolytic degradation of the polymer is time-dependent. The impact of the morphological changes in the dynamic mechanical properties revealed the movement of elasticity transition to higher temperatures and reduction in the chain mobility with time. Changes in the mechanical properties are a function of the initial stress relaxation and chain scission as a consequence of degradation and thermodynamically driven morphological changes increasing the crystallinity and embrittling the polymer. As the pipes aged the burst pressures progressively decreased. Examination of the failure surfaces indicated brittle failure and clear evidence of environmental stress cracking. Whilst the data indicate that the pipes might be used effectively for hydrophobic fluids, hydrophilic fluids and in particular methanol can significantly shorten their effective life.
机译:在这项研究中,报道了使用200 bar的恒定压力和循环压力方式在40℃,70℃和100℃下在水,甲醇和二甲苯中经受老化的尼龙11管的测量。重量测量表明溶剂被聚合物吸收的速率,差示扫描量热法随着材料的老化而跟踪结晶度的变化。当管子承受高压时,观察到拉伸性能的巨大变化,并反映了当管子挤出时由淬火过程引入的基体中应力的松弛。变化的幅度随流体而变化,并反映了它们被聚合物吸收的相对能力。聚合物的相对粘度的测量表明,在水和甲醇的情况下,聚合物的水解降解是时间依赖性的。动态力学性能的形态变化的影响揭示了弹性转变为更高温度的运动以及随着时间推移链迁移率的降低。力学性能的变化是初始应力松弛和断链的函数,这是降解和热力学驱动的形态变化的结果,从而增加了结晶度并使聚合物脆化。随着管道的老化,破裂压力逐渐降低。破坏表面的检查表明脆性破坏,并且清楚地表明环境应力开裂。尽管数据表明该管可有效用于疏水性流体,但是亲水性流体,尤其是甲醇会大大缩短其有效寿命。

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