TECHNOLOGICAL ASSURANCE OF THE MILLING PROCESS OF PRISMATIC CHANNELS IN HEAT EXCHANGE ALUMINUM ALLOYS

Authors

  • Angel Lengerov Department Mechanical engineering and technologies, Technical university of Sofia, Branch Plovdiv (BG)
  • Desislava Petrova Department “Management”, Technical university of Gabrovo (BG)
  • Martin Bozhakov Department Mechanical engineering and technologies, Technical university of Sofia, Branch Plovdiv (BG)

DOI:

https://doi.org/10.17770/etr2024vol3.8163

Keywords:

aluminum alloy products, milling process, technological assurance

Abstract

When milling prismatic grooves in aluminum alloy products, the technological parameters of the process must ensure the specified accuracy and processing performance. This guarantees the maximum heat exchange properties of the surfaces of the processed parts, critical for applications where efficient thermal management is essential. Enhancing these properties can significantly impact the operational efficiency of systems in aerospace, automotive, and electronics industries.

Articles on the interrelationship of cutting modes and technological and energy parameters of the milling process of prismatic channels in aluminum alloys is an actual task. Its practical implementation will guarantee the improvement of various facilities for transferring and releasing thermal energy. This research could lead to advancements in heat sink design and more effective cooling strategies in high-performance engineering applications, where optimal heat dissipation is vital for maintaining system stability and prolonging lifespan.

 

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References

I. Balabanova, G. Georgiev, “Image Recognition by FFT, Artificial Intelligence and k-Nearest Neighbors Approach”. IOP Publishing, Journal of Physics: Conference Series - EEPES’22, vol. 2339, pp. 1-8, 2022.

A., I. Bastanstev, V., I., Turomsha, Pobm[enie efektivnosti obrabotki na tovarnih stankah s StPU, Mashinostroenia, Minsk, 2001.

A.G. Kocilovii, I R.K. Madsteriakova – 4 izd., prerab. Idop., Spravochnik tehnologa-mashinostroitelia – Tom 2, Moskva, Mashinostroenia, 1985.

I. Mitev, Optimizing the quantity of liquid phase at the sintering of powder construction materials from system Fe-Cu-Sn, 11th International Scientific Conference “TechSys 2022” – Engineering, Technologies and Systems, AIP Conf. Proc. 2980, https://doi.org/10.1063/5.0184238 , Published by AIP Publishing. 978-0-7354-4814-8/$30.00, pp. 060017-1 to 060017-7.

I. Mitev, Determining the diffusion coefficient in simultaneous saturation with boron and carbon of austenite alloyed with cooper in powder metallurgy structural materials, 11th International Scientific Conference “TechSys 2022” – Engineering, Technologies and Systems, AIP Conf. Proc. 2980, 060016-1–060016-8; https://doi.org/10.1063/5.0184239 , Published by AIP Publishing. 978-0-7354-4814-8/$30.00, pp. 060016-1 to 060016-8.

Sabev, Sabi & Kasabov, Plamen, The effect of rate and cutting speed to surface roughness during hoe boring of aluminum with antivibration boring bar, Environment. Technologies. Resources., Proceedings of the International Scientific and Practical Conference. Volume 3, pp. 314-318. DOI:10.17770/etr2021vol3.6537, 2021.

A.Vachev, Cutting the materials, Part 1 and Part 2, Plovdiv, 2000.

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Published

2024-06-22

How to Cite

[1]
A. Lengerov, D. Petrova, and M. Bozhakov, “TECHNOLOGICAL ASSURANCE OF THE MILLING PROCESS OF PRISMATIC CHANNELS IN HEAT EXCHANGE ALUMINUM ALLOYS”, ETR, vol. 3, pp. 154–157, Jun. 2024, doi: 10.17770/etr2024vol3.8163.