高密度聚乙烯疏水性的丧失

M. Khan, R. Hackam
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引用次数: 17

摘要

本研究报告了高密度聚乙烯(HDPE)在盐水溶液中浸泡后的疏水性损失。溶液电导率为5 ~ 10 μ S/cm,温度为23 ~ 73 μ S/ C。测定了水滴在聚合物表面的接触角,从而测定了聚合物的疏水性。研究了施加射频放电或高压直流应力对疏水性损失和恢复的影响。接触角随溶液盐度和温度的升高而减小。表面能和疏水性下降所需的时间取决于盐和热的综合应力。接触角在射频放电后显著减小,在去除应力后恢复得非常缓慢。由于盐溶液的吸收,试样的重量和表面粗糙度的增加也被测量,并与接触角的变化相关,从而与表面的疏水性有关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Loss of hydrophobicity of high density polyethylene
This study reports on the loss of hydrophobicity of high density polyethylene (HDPE) after immersion in a saline solution. The conductivity of the solution was varied from 5 to 10/sup 5/ /spl mu/S/cm and its temperature from 23 to 73/spl deg/C. The contact angle of a droplet of water on the polymer surface which gives a measure of the hydrophobicity was determined. The influence of applying either a radio frequency (RF) discharges or a high voltage dc stress on the loss and the recovery of the hydrophobicity was investigated. It is found that the contact angle decreased with increasing salinity level and increasing temperature of the solution. The time which it took for the surface energy and therefore, the hydrophobicity to drop depended on the combined stresses of salinity and heat. The contact angle decreased substantially after subjecting the surface to RF discharges and subsequently recovered very slowly after the removal of the stress. The increase in the weight and the surface roughness of the specimens due to absorption of the saline solution were also measured and correlated to the changes in the contact angle and thus to the hydrophobic property of the surface.
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