Mathematical analysis of transient temperature changes in the chip root during milling

Author:

Zoltán Pálmai

Funder

National Research, Development and Innovation Office

Publisher

Springer Science and Business Media LLC

Subject

Industrial and Manufacturing Engineering,Computer Science Applications,Mechanical Engineering,Software,Control and Systems Engineering

Reference44 articles.

1. Zhang YH, Tan GY, Liu GJ (2009) Thermal imaging experimental research on temperature field for milling insert. Key Eng Mater 392-394:924–928

2. Yamamoto K, Omokawa H, Kuroda M, Itakura K (2001) High-efficiency cutting of super-heat resistant alloy. Mitsubishi Heavy Industries, Ltd. Technical Review 38(1):12–16

3. Zgórniak P, Grudulska A (2012) Investigation of temperature distribution during milling process of Az911hp magnesium alloys. Mechanics and Mechanical Engineering 16(1):33–40

4. Singh Gill SS, Singh R, Singh H, Singh J (2009) Wear behaviour of cryogenically treated tungsten carbide inserts under dry and wet turning conditions. International Journal of Machine Tools & Manufacture 49:256–260

5. Vieira JM, Machado AR, Ezugwu EO (2001) Performance of cutting fluids during face milling of steels. Journal of Materials Processing Technology 116:244–251

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1. Effect of temperature on milling stability of thin-walled parts;Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture;2022-05-25

2. The energetic characteristics of milling with changing cross-section in the definition of specific cutting force by FEM method;CIRP Journal of Manufacturing Science and Technology;2021-01

3. The transient changing of forces in interrupted milling;The International Journal of Advanced Manufacturing Technology;2019-07-19

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