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Small-Scale Morphological Features on a Solid Surface Processed by High-Pressure Abrasive Water Jet

机译:高压磨料水射流处理的固体表面的小形貌特征

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摘要

Being subjected to a high-pressure abrasive water jet, solid samples will experience an essential variation of both internal stress and physical characteristics, which is closely associated with the kinetic energy attached to the abrasive particles involved in the jet stream. Here, experiments were performed, with particular emphasis being placed on the kinetic energy attenuation and turbulent features in the jet stream. At jet pressure of 260 MPa, mean velocity and root-mean-square (RMS) velocity on two jet-stream sections were acquired by utilizing the phase Doppler anemometry (PDA) technique. A jet-cutting experiment was then carried out with Al-Mg alloy samples being cut by an abrasive water jet. Morphological features and roughness on the cut surface were quantitatively examined through scanning electron microscopy (SEM) and optical profiling techniques. The results indicate that the high-pressure water jet is characterized by remarkably high mean flow velocities and distinct velocity fluctuations. Those irregular pits and grooves on the cut surfaces indicate both the energy attenuation and the development of radial velocity components in the jet stream. When the sample is positioned with different distances from the nozzle outlet, the obtained quantitative surface roughness varies accordingly. A descriptive model highlighting the behaviors of abrasive particles in jet-cutting process is established in light of the experimental results and correlation analysis.
机译:经受高压研磨水射流后,固体样品将经历内部应力和物理特性的重要变化,这与附着在射流中的磨料颗粒上的动能密切相关。在这里,进行了实验,特别着重于射流中的动能衰减和湍流特征。在260 MPa的射流压力下,利用相位多普勒风速计(PDA)技术获得了两个射流截面上的平均速度和均方根(RMS)速度。然后进行喷射切割实验,用磨料射流切割Al-Mg合金样品。通过扫描电子显微镜(SEM)和光学轮廓分析技术定量检查了切割表面的形态特征和粗糙度。结果表明,高压水射流具有很高的平均流速和明显的速度波动特征。切割面上的那些不规则的凹坑和凹槽既表明了能量的衰减,又表明了射流中径向速度分量的发展。当样品与喷嘴出口的距离不同时,获得的定量表面粗糙度也会相应变化。根据实验结果和相关分析,建立了一个描述模型,突出了喷射过程中磨料颗粒的行为。

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