Qi Guoquan, Yan Hongxia, Qi Dongtao, Li Houbu, Zhang Zhao
State Key Laboratory of Performance and Structural Safety for Petroleum Tubular Goods and Equipment Materials, CNPC Tubular Goods Research Institute, Xi'an 710077, China.
Department of Applied Chemistry, School of Chemistry and Chemical Engineering, Northwestern Polytechnical University, Xi'an 710072, China.
Polymers (Basel). 2022 Oct 10;14(19):4244. doi: 10.3390/polym14194244.
In the process of transporting oil and gas, the service performance of thermoplastic pipes will decline due to the multiple influences of medium, temperature, and pressure. In order to study the service performance changes of PVDF pipes under oil and gas transportation conditions, the high-temperature autoclave is used to simulate the service state of the pipe in the mediums. The PVDF samples are exposed to simulated oil and gas mediums for 1 week, 3 weeks, 5 weeks, and 7 weeks under 60 °C and 90 °C conditions. After the exposure test, the physical and chemical properties of the PVDF pipe are tested and compared with the initial samples. Compared with the initial sample, the sample quality after the exposure test has a slight increase, with growth rates of 2% and 3% at 60 °C and 90 °C, respectively. Meanwhile, the tensile strength of the samples is about 13% and 21% lower than that of the initial sample, respectively. According to the microscopic morphology analyses, there are some crack defects on the surface of the sample after the exposure test. Through infrared analysis, it is shown that no molecular chain breakage, crosslinking, or other reactions are found after the exposure test. The above analysis shows that the PVDF sample has slight penetration and swelling during the exposure test. However, due to the large force between the PVDF molecules, its mechanical properties have a small downward trend, showing excellent environmental stress crack resistance.
在油气输送过程中,热塑性管材的服役性能会因介质、温度和压力的多重影响而下降。为研究聚偏氟乙烯(PVDF)管材在油气输送条件下的服役性能变化,采用高温高压釜模拟管材在介质中的服役状态。将PVDF试样在60℃和90℃条件下分别暴露于模拟油气介质中1周、3周、5周和7周。暴露试验后,对PVDF管材的物理和化学性能进行测试,并与初始试样进行比较。与初始试样相比,暴露试验后的试样质量略有增加,在60℃和90℃条件下的增长率分别为2%和3%。同时,试样的拉伸强度分别比初始试样低约13%和21%。根据微观形态分析,暴露试验后的试样表面存在一些裂纹缺陷。通过红外分析表明,暴露试验后未发现分子链断裂、交联或其他反应。上述分析表明,PVDF试样在暴露试验过程中存在轻微的渗透和溶胀现象。然而,由于PVDF分子间作用力较大,其力学性能呈小幅下降趋势,表现出优异的耐环境应力开裂性能。