Results 161 to 170 of about 1,035 (205)
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Optimization of abrasive water jet cutting of ductile materials
Journal of Wuhan University of Technology-Mater. Sci. Ed., 2011Full factorial design of experiments was developed in order to investigate the effects of jet pressure, abrasive mixing rate, cutting feed, and plate thickness upon three response variables, surface finish of cutting wear zone, percentage proportion of striation free area, and maximum width of cut.
Iqbal, Asif +2 more
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Experimental study on abrasive recycling in cutting with abrasive suspension water jet
The International Journal of Advanced Manufacturing Technology, 2021As the only cold high-energy beam machining technology, abrasive water jet cutting has a lot of unique advantages to process a large variety of materials. The main factor restricting its development and application refers to its high processing cost. Abrasive consumption is considered as one of the main costs. Abrasive recycling is an effective way for
Qingshan Ma +4 more
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A Study on the Abrasive Water Jet Cutting for Granite
Key Engineering Materials, 2004This paper presents the investigation of an effective abrasive water jet (AWJ) method for granite cutting. Suitable conditions were explored by considering many process parameters, such as water pressure, jet diameter, nozzle traversing speed, abrasives and so on.
Y. Liu, Xun Chen
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Recycling Capacity of Abrasives in Abrasive Water Jet Cutting
1992For the calculation of the recycling capacity of abrasives in abrasive water jets it is necessary to know details about the disintegration behaviour during the cutting process. The aim of the paper is to discuss the influence of different parameters like cutting speed, particle size and abrasive flow rate on the disintegration process.
N. S. Guo, H. Louis, G. Meier, J. Ohlsen
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Abrasive water-jet cutting of amorphous alloys
Journal of Materials Processing Technology, 1992Abstract Abrasive water-jet (AWJ) cutting of soft magnetic and anti-corrosive amorphous foils has been performed. First, the mechanical and thermal properties of the foils are obtained. Alumina and garnet are used as the abrasive. The surfaces cut by AWJ are compared with the results from etching and blanking.
T. Sano +4 more
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Cutting of Free-Cutting Steel by Abrasive Water Jet
2023Today, with the development of defense and aerospace industries, the importance of nontraditional manufacturing technologies is gradually increasing. Since there is no significanttemperature factor in the abrasive water jet (AWJ) cutting process, which is one of the nontraditional manufacturing methods, the deterioration in the microstructure of the ...
Armağan, Mustafa +2 more
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Performance of recycling abrasives in rock cutting by abrasive water jet
Journal of Central South University, 2015Rock cutting performance of recycling abrasives was investigated in terms of cutting depth, kerf width, kerf taper angle and surface roughness. Gravity separation technique was employed to separate the abrasives and the rock particles. The recycling abrasive particles were then dried and sieved for determination of their disintegration behaviors ...
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The effect of cutting jet variation on striation formation in abrasive water jet cutting
International Journal of Machine Tools and Manufacture, 2001Abrasive water jet machining is an emerging technology which can shape almost all engineering materials, but it also produces a characteristic striated surface finish which limits its potential applications. In this study, the characterisation of different materials' cut surfaces is investigated using a scanning electron microscope.
Chen, Frank L., Siores, Elias
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Comparison between Abrasive Water Jet Cutting and Laser Cutting
Journal of Laser Applications, 1991This paper is intended to demonstrate the advantages and disadvantages of laser profiling techniques as compared with the Abrasive Water Jet (AWJ). The growth of AWJ as a cutting tool has provided engineers with a new profiling technique which often offers great technical and commercial advantages over more traditional methods.
L. Ohlsson +3 more
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Abrasive Water Jet Cutting of Mirror Cores
Optical Fabrication and Testing Workshop, 1992Eastman Kodak has combined an Abrasive Water Jet (AWJ) and a three axis robot to provide the capability to cut lightweight mirror cores. An overview of the AWJ process will be given and mirror core design flexibility resulting from this process will be shown. This process can be used for high accuracy machining of mirror cores or lower accuracy - lower
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