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International journal of machine tools & manufacture, ISSN 0890-6955, 03/2013, Volume 66, pp. 37 - 43
The chip formation for a Ti–6Al–4V alloy was studied at high cutting speeds combined with large uncut chip thicknesses (0.1–0.25mm... 
Titanium alloy | Chip morphology | Orthogonal cutting | Very high cutting speed | Chip formation | Image processing | Titanium alloys | Equipment and supplies | Shear | Chips | High speed | Segments | Cutting speed | Softening | Hardening rate
Journal Article
International journal of machine tools & manufacture, ISSN 0890-6955, 01/2015, Volume 88, pp. 237 - 248
Nanofluid, fluid suspensions of nanometer sized particles are revolutionizing the field of heat transfer area. Addition of nano-particles to the base fluid... 
Ti–6Al–4V | Grinding | Nanofluids | Chip formation | Metal working fluid | Ti-6Al-4V | Engineering | Engineering, Manufacturing | Technology | Engineering, Mechanical | Science & Technology | Scanning electron microscopy | GRINDING | Fluid dynamics | HEAT TRANSFER | Nanostructure | Titanium base alloys | COPPER OXIDE | MICROSTRUCTURES | Coefficient of friction | Fluids | Friction | CHIPS | FLUIDITY | FLUID FLOW
Journal Article
Lab on a chip, ISSN 1473-0197, 2016, Volume 16, Issue 24, pp. 4653 - 4657
Journal Article
International journal of machine tools & manufacture, ISSN 0890-6955, 11/2010, Volume 50, Issue 11, pp. 943 - 960
.... In this study, influence of material constitutive models and elastic–viscoplastic finite element formulation on serrated chip formation for modeling of machining Ti–6Al... 
Titanium alloys | Finite element simulations | Flow softening | Machining | Engineering | Engineering, Manufacturing | Technology | Engineering, Mechanical | Science & Technology | Titanium | Analysis | Carbides | Finite element method | Alloying elements | Mathematical analysis | Chip formation | Mathematical models | Softening | Titanium base alloys
Journal Article
International journal of machine tools & manufacture, ISSN 0890-6955, 03/2016, Volume 102, pp. 41 - 55
.... To address these phenomena, a fracture mechanics based cutting model was proposed for the chip formation and cutting process... 
Maximum uncut chip thickness | Orthogonal cutting | Bone cutting | Chip formation | Engineering | Engineering, Manufacturing | Technology | Engineering, Mechanical | Science & Technology | Anisotropy | Analysis | Machining | Cutting | Fracture mechanics | Chips | Morphology | Bones | Mathematical models
Journal Article
Journal of materials processing technology, ISSN 0924-0136, 06/2009, Volume 209, Issue 10, pp. 4645 - 4653
The aim of this article is to investigate the effect of different fracture criteria on the chip formation process, focusing on the formation of segmented chips and what happens around the cutting edge... 
Damage models | Alloy 718 | Segmented chips | Chip formation | FEM | Engineering | Materials Science | Technology | Materials Science, Multidisciplinary | Engineering, Manufacturing | Engineering, Industrial | Science & Technology | Finite element method | Models | Analysis | Alloys | Machining | titanium-alloys | wear | Maskinteknik | fracture | fem simulation | tool edge | inconel-718 | Mechanical Engineering
Journal Article
International journal of machine tools & manufacture, ISSN 0890-6955, 06/2009, Volume 49, Issue 7-8, pp. 561 - 568
Chip formation during dry turning of Ti6Al4V alloy has been examined in association with dynamic cutting force measurements under different cutting speeds, feed rates and depths of cut... 
Titanium alloy | Frequency | Cyclic force amplitude variation | Machining | Cutting force | Chip segmentation | Engineering | Engineering, Manufacturing | Technology | Engineering, Mechanical | Science & Technology | Titanium alloys | Universities and colleges
Journal Article
Journal of materials processing technology, ISSN 0924-0136, 12/2015, Volume 226, pp. 60 - 68
Journal Article
Proceedings of the Institution of Mechanical Engineers. Part H, Journal of engineering in medicine, ISSN 0954-4119, 10/2017, Volume 231, Issue 10, pp. 959 - 974
... between the tool and the skull. In this study, an orthogonal cutting experiment during a craniotomy of fresh pig skulls was performed to investigate chip formation on the side cutting and face cutting of the skull using a high-speed camera... 
microstructural models | Craniotomy | orthogonal cutting | chip formation | forces | Engineering | Technology | Engineering, Biomedical | Science & Technology | Mechanical Phenomena | Animals | Skull - surgery | Craniotomy - instrumentation | Swine | Cutting tools | Animal models | Chips | Chip formation | Durability | Cutting speed | Sharpness | Shearing | Studies | Rake angle | Bone growth | Structural damage | Skull | Extrusion | Cutting parameters
Journal Article
Precision engineering, ISSN 0141-6359, 10/2011, Volume 35, Issue 4, pp. 625 - 637
Journal Article