Small-Scale Morphological Features on a Solid Surface Processed by High-Pressure Abrasive Water Jet
Can Kang,Haixia Liu +1 more
TL;DR: A descriptive model highlighting the behaviors of abrasive particles in jet-cutting process is established in light of the experimental results and correlation analysis, indicating that the high-pressure water jet is characterized by remarkably high mean flow velocities and distinct velocity fluctuations.
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Abstract: 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.
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Citations
Application of Laser Profilometry to Evaluation of the Surface of the Workpiece Machined by Abrasive Waterjet Technology
TL;DR: In this paper, a 3D laser profilometer developed at the Department of Design and Technical Systems Monitoring at MIT was used in roughness measurement of various materials produced by water jet cutting.
Impingement capability of high-pressure submerged water jet: Numerical prediction and experimental verification
TL;DR: In this article, a comparison between submerged and non-submerged water jets is performed by numerical simulation and experiment, and the results show that submerged water jet is characterized by low velocity magnitudes relative to non-sunken water jet at the same jet pressure.
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TL;DR: In this paper, a comparative analysis of the performance of garnet, aluminum oxide and silicon carbide during abrasive water-jet machining of glass was presented, which showed that the width of cut increases as the standoff distance of the nozzle from the work is increased.
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Jun Wang,W.C.K. Wong +1 more
TL;DR: In this article, a study of abrasive waterjet (AWJ) cutting of metallic coated sheet steels is presented based on a statistically designed experiment, which shows that AWJ cutting is a viable technology for processing metallic coated steel with good productivity and kerf quality.
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