Mechanical and thermal performance of magnesium carbon fiber sandwich composites with variable fiber orientations for aerospace structures. [PDF]
Annadorai ME, Ramakrishna M.
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Experiments of Main Parameters Affecting the Erosive Behavior of Self-Excited Oscillating Abrasive Water Jets: Length of Self-Oscillation Chamber, Jet Pressure, Abrasive Fluid Velocity, and Abrasive Grain Size. [PDF]
Tao B +5 more
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Numerical modeling of abrasive waterjet to optimize rock cutting parameters. [PDF]
Mahdevari S +2 more
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Design of Piezoelectric Ultrasonic Composite Vibration System for Precision Grinding. [PDF]
Huang W, Huang K, Zhong Q, Wu J, An D.
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Abrasive water-jet cutting technique from the laboratory stage into real application. EUR 15241 EN [PDF]
Louis, H., Meier, G., Pilot, G.
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Multiscale and re-entrant surface analysis of multi jet fusion surfaces and the effect of postprocessing via sandblasting. [PDF]
Mietliński P +6 more
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Abrasive water jet machining (AWJM) is a non-traditional technology widely used in industries for processing of materials. AWJM is a replacement for the other modern and conventional machining processes that have thermal or mechanical disadvantages for workpiece and tool material.
Sachin Singh, Vishal Gupta, M. R. Sankar
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Productivity of abrasive water-jet machining
Russian Engineering Research, 2017The productivity in abrasive water-jet machining of titanium alloys and heat-resistant alloys is discussed. Empirical formulas for the rate of metal removal as a function of the machining parameters are presented.
A. V. Meshcheryakov, A. P. Shulepov
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