11 Numerical and Experimental Study on Orthogonal …
141
parameters of the micro-pits when placing the micro-pits in the tool to reduce the
impact of “derivative cutting” on the cutting temperature.
The placement of the micro-pit array has a certain influence on the contact area of
the tool-chip, the stress distribution of the chip, the generation of chip accumulation,
the surface quality of the workpiece, the cutting force and the cutting temperature. By
rationally designing the shape and size parameters of the micro-pit array, it is possible
to achieve reasonable control of the stress level of the chip contact surface and reduce
the stress concentration phenomenon, improve the chip breaking rate, reduce the
formation of chip accumulation, improve the surface quality of the workpiece, and
reduce cutting force.
Acknowledgements This work was supported by the National Natural Science Foundation of
China (No. U19A20103), the China Postdoctoral Science Foundation (No. 2019M661184), and
the Jilin Province Scientific and Technological Development Program (No. Z20190101005JH)(No.
20190302076GX).
References
1. Wu, L.H., Jiang, C.H.: Effect of shot peening on residual stress and microstructure in the
deformed layer of Inconel 625. Mater. Trans. 58, 164–166 (2017)
2. Wu, L.H., Jiang, C.H.: Effect of thermal relaxation on residual stress and microstructure in the
near surface layers of dual shot peened Inconel 625. Adv. Mech. Eng. 10, 1–6 (2018)
3. Kong, T., Kang, B., Ryu, H.J., Hong, S.H.: Microstructures and enhanced mechanical properties
of an oxide dispersion-strengthened Ni-rich high entropy superalloy fabricated by a powder
metallurgical process. J. Alloy. Compd. 839, 155724 (2020)
4. Song, X., Lei, J., Gu, Z., Zhou, S.: Boosting wear properties of Inconel 718 superalloy by
uniform dispersing graphene nanoplatelets through laser melting deposition. J. Alloy. Compd.
834, 155086 (2020)
5. Zhao, L., Tan, Y., Shi, S., You, X., Li, P., Cui, C.: Microsegregation behavior of inconel 718
superalloy prepared by electron beam smelting layered solidification technology. J. Alloy.
Compd. 833, 155019 (2020)
6. Hu, Z., Qin, C., Chen, X., Tang, A., Fang, T., Yang, Z., Luo, S., Mao, M.: Chemical-mechanical
polishing of cemented carbide insert surface for extended tool life in turning of GH4169
nickel-based superalloy. Int. J. Precis. Eng. Man. 21, 1421–1435 (2020)
7. Shi, P.Y., Wan, S.H., Yi, G.W., Sun, H.W., Yu, Y., Xie, E.Q., Wang, Q.H., Shen, S.Z., Alam, N.:
TiO 2 –ZnO/Ni–5wt.%Al composite coatings on GH4169 superalloys by atmospheric plasma
spray techniques and theirs elevated-temperature tribological behavior. Ceram. Int. 46(9),
13527–13538 (2020).
8. Yin, Y., He, W., Xie, H., Wu, L.: High-temperature fatigue crack propagation study of superalloy
GH4169 by single-lens 3D digital image correlation. Sci. China Technol. Sc. 63, 693–704
(2020)
9. Yang, J., Liu, D., Zhang, X., Liu, M., Zhao, W., Liu, C.: The effect of ultrasonic surface rolling
process on the fretting fatigue property of GH4169 superalloy. Int. J. Fatigue 133, 105373
(2020)
10. Miao, Q., Ding, W., Kuang, W., Yang, C.: Comparison on grindability and surface integrity in
creep feed grinding of GH4169, K403, DZ408 and DD6 nickel-based superalloys. J. Manuf.
Process. 49, 175–186 (2020)
141
parameters of the micro-pits when placing the micro-pits in the tool to reduce the
impact of “derivative cutting” on the cutting temperature.
The placement of the micro-pit array has a certain influence on the contact area of
the tool-chip, the stress distribution of the chip, the generation of chip accumulation,
the surface quality of the workpiece, the cutting force and the cutting temperature. By
rationally designing the shape and size parameters of the micro-pit array, it is possible
to achieve reasonable control of the stress level of the chip contact surface and reduce
the stress concentration phenomenon, improve the chip breaking rate, reduce the
formation of chip accumulation, improve the surface quality of the workpiece, and
reduce cutting force.
Acknowledgements This work was supported by the National Natural Science Foundation of
China (No. U19A20103), the China Postdoctoral Science Foundation (No. 2019M661184), and
the Jilin Province Scientific and Technological Development Program (No. Z20190101005JH)(No.
20190302076GX).
References
1. Wu, L.H., Jiang, C.H.: Effect of shot peening on residual stress and microstructure in the
deformed layer of Inconel 625. Mater. Trans. 58, 164–166 (2017)
2. Wu, L.H., Jiang, C.H.: Effect of thermal relaxation on residual stress and microstructure in the
near surface layers of dual shot peened Inconel 625. Adv. Mech. Eng. 10, 1–6 (2018)
3. Kong, T., Kang, B., Ryu, H.J., Hong, S.H.: Microstructures and enhanced mechanical properties
of an oxide dispersion-strengthened Ni-rich high entropy superalloy fabricated by a powder
metallurgical process. J. Alloy. Compd. 839, 155724 (2020)
4. Song, X., Lei, J., Gu, Z., Zhou, S.: Boosting wear properties of Inconel 718 superalloy by
uniform dispersing graphene nanoplatelets through laser melting deposition. J. Alloy. Compd.
834, 155086 (2020)
5. Zhao, L., Tan, Y., Shi, S., You, X., Li, P., Cui, C.: Microsegregation behavior of inconel 718
superalloy prepared by electron beam smelting layered solidification technology. J. Alloy.
Compd. 833, 155019 (2020)
6. Hu, Z., Qin, C., Chen, X., Tang, A., Fang, T., Yang, Z., Luo, S., Mao, M.: Chemical-mechanical
polishing of cemented carbide insert surface for extended tool life in turning of GH4169
nickel-based superalloy. Int. J. Precis. Eng. Man. 21, 1421–1435 (2020)
7. Shi, P.Y., Wan, S.H., Yi, G.W., Sun, H.W., Yu, Y., Xie, E.Q., Wang, Q.H., Shen, S.Z., Alam, N.:
TiO 2 –ZnO/Ni–5wt.%Al composite coatings on GH4169 superalloys by atmospheric plasma
spray techniques and theirs elevated-temperature tribological behavior. Ceram. Int. 46(9),
13527–13538 (2020).
8. Yin, Y., He, W., Xie, H., Wu, L.: High-temperature fatigue crack propagation study of superalloy
GH4169 by single-lens 3D digital image correlation. Sci. China Technol. Sc. 63, 693–704
(2020)
9. Yang, J., Liu, D., Zhang, X., Liu, M., Zhao, W., Liu, C.: The effect of ultrasonic surface rolling
process on the fretting fatigue property of GH4169 superalloy. Int. J. Fatigue 133, 105373
(2020)
10. Miao, Q., Ding, W., Kuang, W., Yang, C.: Comparison on grindability and surface integrity in
creep feed grinding of GH4169, K403, DZ408 and DD6 nickel-based superalloys. J. Manuf.
Process. 49, 175–186 (2020)
