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Accelerated testing method to estimate the long‐term hydrostatic strength of semi‐crystalline plastic pipes

机译:加速测试方法来估计半晶塑料管的长期静压强度

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>The ability to quickly develop predictions of the service lifetime of plastic pipes at different load levels allows designers to choose the best plastic material and design pipe for a specific application. Additionally, it helps material producers to rapidly design, manufacture, test, screen, and modify the base polymeric material. The aim of this study is to introduce a combined experimental and analytical framework to develop accelerated lifetime estimates for semi‐crystalline plastic pipes which is sensitive to the structure, orientation, and morphology changes introduced by changing processing conditions. To accomplish this task, high density polyethylene (HDPE) is chosen as the exemplary base material and custom fixtures are developed to admit tensile and hoop burst tests on the as‐manufactured HDPE pipes. A pressure‐modified Eyring flow equation is employed to predict the rupture lifetime of HDPE pipes using the measured mechanical properties under uniaxial tensile and compression loading in different temperatures and strain rates. The method allows the prediction of pipe service lifetimes in excess of 50?years using experiments conducted over approximately 10 days instead of the traditional 13?months. POLYM. ENG. SCI., 60:879–888, 2020. ? 2019 Society of Plastics Engineers
机译: >在不同负载水平上快速开发塑料管服务寿命预测的能力允许设计人员为特定应用选择最佳塑料材料和设计管道。此外,它还可以帮助材料生产商快速设计,制造,测试,筛选和改性基础聚合物材料。本研究的目的是引入组合的实验和分析框架,用于开发通过改变加工条件而引入的结构,取向和形态变化敏感的半结晶塑料管的加速寿命估计。为了完成该任务,选择高密度聚乙烯(HDPE)作为示例性基材和定制夹具,以承认在制造的HDPE管道上承认拉伸和环箍突发测试。使用压力改性的卵巢流动方程用于使用不同温度和应变速率的单轴拉伸和压缩负载下测量的机械性能来预测HDPE管的破裂寿命。该方法允许使用在大约10天而不是传统的13个月内进行的实验预测管服务寿命超过50岁的时间。聚合物。 eng。 SCI。,60:879-888,2020。 2019年塑料工程师协会

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