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Journal Articles
Accepted Manuscript
Article Type: Research Papers
J. Manuf. Sci. Eng.
Paper No: MANU-22-1278
Published Online: June 2, 2023
Journal Articles
Accepted Manuscript
Article Type: Research Papers
J. Manuf. Sci. Eng.
Paper No: MANU-23-1060
Published Online: May 23, 2023
Journal Articles
Accepted Manuscript
Article Type: Research Papers
J. Manuf. Sci. Eng.
Paper No: MANU-23-1061
Published Online: May 23, 2023
Journal Articles
Accepted Manuscript
Article Type: Research Papers
J. Manuf. Sci. Eng.
Paper No: MANU-22-1577
Published Online: May 22, 2023
Journal Articles
Accepted Manuscript
Article Type: Research Papers
J. Manuf. Sci. Eng.
Paper No: MANU-22-1633
Published Online: May 22, 2023
Journal Articles
Accepted Manuscript
Ekaterina Gongadze, Chris Dighton, Gregory Nash, Martin Moss, Brett Hemingway, Jonathan P.-H. Belnoue, Stephen R. Hallett
Article Type: Research Papers
J. Manuf. Sci. Eng.
Paper No: MANU-22-1639
Published Online: May 22, 2023
Journal Articles
Accepted Manuscript
Article Type: Research Papers
J. Manuf. Sci. Eng.
Paper No: MANU-23-1055
Published Online: May 22, 2023
Journal Articles
Accepted Manuscript
Article Type: Research Papers
J. Manuf. Sci. Eng.
Paper No: MANU-22-1679
Published Online: May 16, 2023
Journal Articles
Accepted Manuscript
Article Type: Research Papers
J. Manuf. Sci. Eng.
Paper No: MANU-22-1689
Published Online: May 16, 2023
Journal Articles
Article Type: Research Papers
J. Manuf. Sci. Eng. September 2023, 145(9): 091002.
Paper No: MANU-23-1008
Published Online: May 9, 2023
Image
in Algebraic Modeling of Cylindrical Interference-Free Power-Skiving Tool for Involute Internal Gear Cutting With Tilt Angle
> Journal of Manufacturing Science and Engineering
Published Online: May 9, 2023
Fig. 1 Schematic illustrations of three alternative methods for the design of interference-free power-skiving tools: ( a ) conical shape tool, ( b ) cylindrical shape tool with offset rake surface, and ( c ) cylindrical shape tool with tilt angle More about this image found in Schematic illustrations of three alternative methods for the design of inte...
Image
in Algebraic Modeling of Cylindrical Interference-Free Power-Skiving Tool for Involute Internal Gear Cutting With Tilt Angle
> Journal of Manufacturing Science and Engineering
Published Online: May 9, 2023
Fig. 2 Kinematical modeling of power-skiving cutting with tilt angle δ More about this image found in Kinematical modeling of power-skiving cutting with tilt angle δ
Image
in Algebraic Modeling of Cylindrical Interference-Free Power-Skiving Tool for Involute Internal Gear Cutting With Tilt Angle
> Journal of Manufacturing Science and Engineering
Published Online: May 9, 2023
Fig. 3 Schematic illustrations of rotational contact relation between internal gear surface and bowl-shaped auxiliary tool generating surface without mutual interference: ( a ) 3-D perspective, ( b ) view from y g -axis direction, and ( c ) view from y t -axis direction More about this image found in Schematic illustrations of rotational contact relation between internal gea...
Image
in Algebraic Modeling of Cylindrical Interference-Free Power-Skiving Tool for Involute Internal Gear Cutting With Tilt Angle
> Journal of Manufacturing Science and Engineering
Published Online: May 9, 2023
Fig. 4 Schematic illustration of relationship between cylindrical tool and bowl-shaped auxiliary tool generating surface without mutual interference More about this image found in Schematic illustration of relationship between cylindrical tool and bowl-sh...
Image
in Algebraic Modeling of Cylindrical Interference-Free Power-Skiving Tool for Involute Internal Gear Cutting With Tilt Angle
> Journal of Manufacturing Science and Engineering
Published Online: May 9, 2023
Fig. 5 Schematic illustrations of rack parameters: ( a ) top view, ( b ) normal cross-section view (i.e., A–A section), and ( c ) kinematical modeling between rack and gear More about this image found in Schematic illustrations of rack parameters: ( a ) top view, ( b ) normal cr...
Image
in Algebraic Modeling of Cylindrical Interference-Free Power-Skiving Tool for Involute Internal Gear Cutting With Tilt Angle
> Journal of Manufacturing Science and Engineering
Published Online: May 9, 2023
Fig. 6 Relations between power-skiving tool, gear profile surface, generating surface, rake surface, and tool cutting edge More about this image found in Relations between power-skiving tool, gear profile surface, generating surf...
Image
in Algebraic Modeling of Cylindrical Interference-Free Power-Skiving Tool for Involute Internal Gear Cutting With Tilt Angle
> Journal of Manufacturing Science and Engineering
Published Online: May 9, 2023
Fig. 7 Schematic illustration of rake plane definition (note that for simplicity only a single cutter tooth is shown.) More about this image found in Schematic illustration of rake plane definition (note that for simplicity o...
Image
in Algebraic Modeling of Cylindrical Interference-Free Power-Skiving Tool for Involute Internal Gear Cutting With Tilt Angle
> Journal of Manufacturing Science and Engineering
Published Online: May 9, 2023
Fig. 8 CAD model of a proposed power-skiving tool More about this image found in CAD model of a proposed power-skiving tool
Image
in Algebraic Modeling of Cylindrical Interference-Free Power-Skiving Tool for Involute Internal Gear Cutting With Tilt Angle
> Journal of Manufacturing Science and Engineering
Published Online: May 9, 2023
Fig. 9 Constructive clearance angle analysis for all conjugate points along the cutting edge of the power-skiving tool More about this image found in Constructive clearance angle analysis for all conjugate points along the cu...
Image
in Algebraic Modeling of Cylindrical Interference-Free Power-Skiving Tool for Involute Internal Gear Cutting With Tilt Angle
> Journal of Manufacturing Science and Engineering
Published Online: May 9, 2023
Fig. 10 Gap analysis between power-skiving tool clearance surface and gear profile surface for different tool rotation angles: ( a ) −2 deg, ( b ) 0 deg, ( c ) + 2 deg, and ( d ) the definition of the gap More about this image found in Gap analysis between power-skiving tool clearance surface and gear profile ...
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