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Influence of Impact Angles on Penetration Rates of CRAs exposed to a High Velocity Multiphase Flow

机译:冲击角对高速多相流动下CRAs渗透率的影响

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A combined flow loop - jet impingement pilot plant has been used to determine mass loss rates in a mixed gas - saltwater - sand multiphase flow at impact velocities up to 70 m/s. Artificial brine with a salt content of 27 g/I was used as liquid phase. Sand content, with grain size below 150 urn, was 2.7 g/l brine. CO_2 at a pressure of 15 bar was used as gas phase. The impact angle between jet stream (nozzle) and sample surface was varied between 30 and 90°.Rectangular stainless steel disc samples with a size of 20 × 15 × 5 mm were used. They were mechanically ground and polished prior to testing. Damaged surfaces of specimens exposed to the high velocity multiphase flow were investigated by stereo microscopy, scanning electron microscopy (SEM) and an optical device for 3D surface measurements. Furthermore, samples were investigated by applying atomic force microscopy (AFM), magnetic force microscopy (MFM) and nanoindentation. Influence of impact velocity and impact angle on penetration rates (mass loss rates) of two CRAs (UNS S30400 and N08028) are presented. Moreover effects of chemical composition and mechanical properties are critically discussed.
机译:组合的流量环喷射冲击导频工厂已用于确定混合气水 - 砂多相流动的质量损失率,在撞击速度下的混合气水 - 砂多相流量高达70米/秒。用盐含量为27g / m的人造盐水用作液相。砂含量,粒径低于150瓮,盐水为2.7克/升。在15巴的压力下的CO_2用作气相。喷射流(喷嘴)和样品表面之间的冲击角在30到90°之间变化。 使用尺寸为20×15×5mm的矩形不锈钢盘样品。它们在测试之前机械地研磨并抛光。通过立体显微镜,扫描电子显微镜(SEM)和用于3D表面测量的光学装置,研究了暴露于高速多相流体的损坏的样本表面。此外,通过施加原子力显微镜(AFM),磁力显微镜(MFM)和纳米indentation来研究样品。提出了影响速度和冲击角对两个CRAS(UNS S30400和N08028)的渗透率(质量损失率)的影响。此外,化学成分和机械性能的影响是批判性的。

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