Research Article

Investigation of the Effects of CNC Tool Runout on Machining of 1.2379 Steel and Tool Life

Volume: 4 Number: 4 December 31, 2024

Investigation of the Effects of CNC Tool Runout on Machining of 1.2379 Steel and Tool Life

Abstract

In the study, the effects of tool run-out caused by the CNC spindle mechanism on surface roughness, measurement accuracy, consumable expenses, maintenance costs and cutting tool life that may occur during the cutting process were investigated based on metal die manufacturing. Before starting the experimental studies, the machine spindle health was measured. Here, tool pulling force, 300 mm test bar run-out, inner conical run-out and spindle vibration values were examined and evaluated. According to the results obtained, the m3/life relationship was compared with the surface milling operation by eliminating the factors causing tool run-out before and after machine tool maintenance for cutting tool life. In order to examine the effect of run-out on surface roughness and measurement accuracy, the effect of run-out was examined and compared by applying outer contour and inner contour operations before and after maintenance with experimental studies. These operations were examined with 1.2379 steel, which is the most commonly used steel type in the metal die sector in terms of mechanical properties. The results showed that run-out has serious negative effects on the cutting process and cutting tool life, measurement accuracy and surface roughness. In operations performed with a healthy spindle after maintenance, the cutting tool life increased by an average of 40%, surface roughness and dimensional accuracy reached the desired levels. The stress during the machine operation decreased by an average of 15%.

Keywords

Thanks

This study was supported by Bursa Şahinkul Makina R&D Center with the project number ARGE-2022-28 2201100000.

References

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Details

Primary Language

English

Subjects

Machine Tools

Journal Section

Research Article

Authors

Mustafa Yazar This is me
Türkiye

Publication Date

December 31, 2024

Submission Date

May 24, 2024

Acceptance Date

October 6, 2024

Published in Issue

Year 2024 Volume: 4 Number: 4

APA
Askerden, M. K., Yazar, M., & Talaş, Ş. (2024). Investigation of the Effects of CNC Tool Runout on Machining of 1.2379 Steel and Tool Life. Engineering Perspective, 4(4), 141-146. https://doi.org/10.29228/eng.pers.77965
AMA
1.Askerden MK, Yazar M, Talaş Ş. Investigation of the Effects of CNC Tool Runout on Machining of 1.2379 Steel and Tool Life. engineeringperspective. 2024;4(4):141-146. doi:10.29228/eng.pers.77965
Chicago
Askerden, Mehmet Kubilay, Mustafa Yazar, and Şükrü Talaş. 2024. “Investigation of the Effects of CNC Tool Runout on Machining of 1.2379 Steel and Tool Life”. Engineering Perspective 4 (4): 141-46. https://doi.org/10.29228/eng.pers.77965.
EndNote
Askerden MK, Yazar M, Talaş Ş (December 1, 2024) Investigation of the Effects of CNC Tool Runout on Machining of 1.2379 Steel and Tool Life. Engineering Perspective 4 4 141–146.
IEEE
[1]M. K. Askerden, M. Yazar, and Ş. Talaş, “Investigation of the Effects of CNC Tool Runout on Machining of 1.2379 Steel and Tool Life”, engineeringperspective, vol. 4, no. 4, pp. 141–146, Dec. 2024, doi: 10.29228/eng.pers.77965.
ISNAD
Askerden, Mehmet Kubilay - Yazar, Mustafa - Talaş, Şükrü. “Investigation of the Effects of CNC Tool Runout on Machining of 1.2379 Steel and Tool Life”. Engineering Perspective 4/4 (December 1, 2024): 141-146. https://doi.org/10.29228/eng.pers.77965.
JAMA
1.Askerden MK, Yazar M, Talaş Ş. Investigation of the Effects of CNC Tool Runout on Machining of 1.2379 Steel and Tool Life. engineeringperspective. 2024;4:141–146.
MLA
Askerden, Mehmet Kubilay, et al. “Investigation of the Effects of CNC Tool Runout on Machining of 1.2379 Steel and Tool Life”. Engineering Perspective, vol. 4, no. 4, Dec. 2024, pp. 141-6, doi:10.29228/eng.pers.77965.
Vancouver
1.Mehmet Kubilay Askerden, Mustafa Yazar, Şükrü Talaş. Investigation of the Effects of CNC Tool Runout on Machining of 1.2379 Steel and Tool Life. engineeringperspective. 2024 Dec. 1;4(4):141-6. doi:10.29228/eng.pers.77965

Cited By

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