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Mechanical performance of polysulfone, polybutylene, and polyamide 6/6 in hot chlorinated water

机译:聚砜,聚丁烯和聚酰胺6/6在热氯化水中的机械性能

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摘要

Polymer materials considered for use in domestic hot water heating systems must maintain mechanical properties in the working fluid over their target lifetimes. In potable water, chlorine and pH combine to create an oxidative environment, commonly characterized by the oxidative reduction potential (ORP), that can chemically attack a polymer, resulting in permanent loss of mechanical strength and stiffness. Water absorption and hydrolysis can also impact polymer properties. In the present study, experiments were conducted to evaluate the mechanical performance of polysulfone, polybutylene, and polyamide 6/6 immersed for up to 1100 h in water at ORP levels of 550 and 825 mV at 60 and 80℃. Mechanical performance was evaluated by measuring creep compliance and the change in tensile strength and molecular weight after exposure. Surface morphology of the exposed materials was examined using scanning electron microscopy. Polyamide 6/6 showed significant degradation in strength and creep compliance in all environments. Despite some variability in measured properties, the blend of polybutylene, which has additives to prolong life, did not degrade. Polysulfone performed the best of the three materials with no discernable change in properties over the duration of the experiments.
机译:考虑用于家用热水系统的聚合物材料必须在其目标寿命内保持工作流体的机械性能。在饮用水中,氯和pH会结合在一起,形成一个氧化环境,通常以氧化还原电位(ORP)为特征,该氧化环境可以化学侵蚀聚合物,导致机械强度和刚度的永久损失。吸水和水解也会影响聚合物的性能。在本研究中,进行了实验以评估在60和80℃下ORP分别为550和825 mV的情况下,聚砜,聚丁烯和聚酰胺6/6在水中浸泡长达1100小时的力学性能。通过测量蠕变柔度以及暴露后拉伸强度和分子量的变化来评估机械性能。使用扫描电子显微镜检查暴露材料的表面形态。聚酰胺6/6在所有环境下均显示出强度和蠕变柔韧性的显着降低。尽管测量性能有所不同,但具有延长寿命的添加剂的聚丁烯混合物却不会降解。聚砜在三种材料中表现最好,在整个实验过程中其性能无明显变化。

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