Review of serrated chip characteristics and formation mechanism from conventional to additively manufactured titanium alloys
D Liu, C Ni, Y Wang, L Zhu - Journal of Alloys and Compounds, 2024 - Elsevier
Titanium alloy, an ideal aviation and biomedical material, is generally considered as a
typical difficult-to-cut material because of low elastic modulus and poor thermal conductivity …
typical difficult-to-cut material because of low elastic modulus and poor thermal conductivity …
Chip formation mechanism of Inconel 718: a review of models and approaches
Inconel 718, a nickel, chrome and iron alloy, has special advantages, such as high-
temperature strength, thermal resistance and corrosion resistance, which facilitate wide …
temperature strength, thermal resistance and corrosion resistance, which facilitate wide …
Cutting of hardened steel
HK Tönshoff, C Arendt, RB Amor - Cirp Annals, 2000 - Elsevier
Cutting of hardened steel is a topic of high interest for today's industrial production and
scientific research. Machine parts consisting of hardened steel are high performance …
scientific research. Machine parts consisting of hardened steel are high performance …
Effects of cutting edge geometry, workpiece hardness, feed rate and cutting speed on surface roughness and forces in finish turning of hardened AISI H13 steel
T Özel, TK Hsu, E Zeren - The International Journal of Advanced …, 2005 - Springer
In this study, the effects of cutting edge geometry, workpiece hardness, feed rate and cutting
speed on surface roughness and resultant forces in the finish hard turning of AISI H13 steel …
speed on surface roughness and resultant forces in the finish hard turning of AISI H13 steel …
Mechanics of saw-tooth chip formation in metal cutting
A Vyas, MC Shaw - 1999 - asmedigitalcollection.asme.org
The saw-tooth chip was the last of the major types to be identified. This occurred in 1954
during machining studies of titanium alloys which were then being considered for aerospace …
during machining studies of titanium alloys which were then being considered for aerospace …
Determination of workpiece flow stress and friction at the chip–tool contact for high-speed cutting
T Özel, T Altan - International Journal of Machine Tools and …, 2000 - Elsevier
This paper presents a methodology to determine simultaneously (a) the flow stress at high
deformation rates and temperatures that are encountered in the cutting zone, and (b) the …
deformation rates and temperatures that are encountered in the cutting zone, and (b) the …
Tool-wear mechanisms in hard turning with polycrystalline cubic boron nitride tools
G Poulachon, A Moisan, IS Jawahir - Wear, 2001 - Elsevier
Hard turning is a turning operation performed on high strength alloy steels (45< HRC< 65) in
order to reach surface roughness close to those obtained in grinding (Ra∼ 0.1 μm) …
order to reach surface roughness close to those obtained in grinding (Ra∼ 0.1 μm) …
High-speed machining of cast iron and alloy steels for die and mold manufacturing
P Fallböhmer, CA Rodrı́guez, T Özel, T Altan - Journal of Materials …, 2000 - Elsevier
This paper gives a brief overview of HSC technology and presents current progress in high
performance machining of cast iron and alloy steels used in die and mold manufacturing …
performance machining of cast iron and alloy steels used in die and mold manufacturing …
A FEM study on mechanisms of discontinuous chip formation in hard machining
YB Guo, DW Yen - Journal of Materials Processing Technology, 2004 - Elsevier
Chip types in machining are determined by the combined effects of workpiece material
properties, cutting speed, and tool geometry. The understanding of chip formation plays an …
properties, cutting speed, and tool geometry. The understanding of chip formation plays an …
Chip formation in machining Ti6Al4V at extremely high cutting speeds
A Gente, HW Hoffmeister, CJ Evans - CIRP Annals, 2001 - Elsevier
The chip formation of Ti6Al4V is described in the cutting speed range between 300 m/min
and 6000 m/min. The specific cutting forces are measured. A new quick stop method is …
and 6000 m/min. The specific cutting forces are measured. A new quick stop method is …