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Procedia Engineering, ISSN 1877-7058, 2014, Volume 69, pp. 838 - 843
The main objective of this paper is to select the best technology for cutting metal... 
abrasive water jet cutting | plasma cutting | laser cutting | economy of metal cutting | Laser cutting | Plasma cutting | Abrasive water jet cutting | Economy of metal cutting
Journal Article
Journal of Cleaner Production, ISSN 0959-6526, 08/2017, Volume 159, pp. 241 - 247
Solid-cutting waste of granite is generated with considerable amounts during the machining processes... 
Granite particles | Abrasives | Marble | Abrasive waterjet | Cutting performance | GREEN & SUSTAINABLE SCIENCE & TECHNOLOGY | ENVIRONMENTAL SCIENCES | ENGINEERING, ENVIRONMENTAL | PERFORMANCE | CONCRETE | Hardness | Machining
Journal Article
The International Journal of Advanced Manufacturing Technology, ISSN 0268-3768, 8/2019, Volume 103, Issue 5, pp. 2795 - 2807
Journal Article
Wear, ISSN 0043-1648, 2008, Volume 265, Issue 5, pp. 821 - 830
In this paper the macro-mechanism of abrasive water jet (AWJ) cutting is studied from the point of cutting front and striation formation analysis... 
Bend wear | Striation formation | River meanders | Abrasive water jet | Cutting front | abrasive waterjet | river meanders | bend wear | BEND | MATERIALS SCIENCE, MULTIDISCIPLINARY | EROSION | ENGINEERING, MECHANICAL | cutting front | striation formation | Conveying machinery | Analysis
Journal Article
Wear, ISSN 0043-1648, 2017, Volume 376-377, pp. 165 - 171
The tribological system of metal cutting is characterized by severe conditions. High stresses and seizure as well as high temperatures and freshly generated surfaces define a unique tribosystem... 
Modelling | Abrasive wear | Wear | Metal cutting | MATERIALS SCIENCE, MULTIDISCIPLINARY | ENGINEERING, MECHANICAL | Metal powders | Tool industry | Metal powder products | Machining | Tribology | Analysis | Seizures (Medicine)
Journal Article
Journal Article
International Journal of Machine Tools and Manufacture, ISSN 0890-6955, 2011, Volume 51, Issue 12, pp. 898 - 910
The present work will provide an in-depth analysis of the abrasive-grain cutting process using a combination of experimental observations and finite element simulations... 
Scratch testing | Abrasive-grain cutting | Finite element model | Grinding | SCRATCH | MODEL | FRICTION COEFFICIENT | ENGINEERING, MECHANICAL | FEM | WORKPIECE TEMPERATURE DISTRIBUTIONS | CHIP FORMATION | ENGINEERING, MANUFACTURING | NEGATIVE RAKE ANGLE | Mechanical engineering | Analysis | Abrasive cutting | Cutting | Cutting tools | Reduction | Diamond tools | Cutting speed | Cutting tool materials | Workpieces
Journal Article
Journal Article
Journal Article
International journal of machine tools & manufacture, ISSN 0890-6955, 2012, Volume 52, Issue 1, pp. 77 - 84
Journal Article
Ultrasonics, ISSN 0041-624X, 2014, Volume 54, Issue 2, pp. 663 - 675
Journal Article