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Obdelava žepov spodnjega dela kolenskega implantanta iz Titanove zlitine Ti6Al4V
ID Matoh, Nejc (Author), ID Pušavec, Franci (Mentor) More about this mentor... This link opens in a new window

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Abstract
V sklopu raziskave se ukvarjamo z obdelavo titana s trohoidnim frezanjem. Cilj je preučiti pogoje obdelave in doseči maksimalno produktivnost in obstojnost pri uporabi sistema za dovod hladilno mazalnega sredstva, ki dovaja mešanico LCO2 (tekoči ogljikov dioksid) in MQL (minimalna količina mazanja). Glavna naloga je preučiti vpliv večanja pretoka LCO2 in MQL na obdelovalnost ter ugotoviti vpliv uporabe različnih olj z merjenjem sil. Pripraviti smo morali merilni sistem Kistler za zajem sil in jakosti zvoka ter merilni mikroskop, surov material za obdelavo, orodje ter sistem za dovod LCO2 in olja. Opravili smo tudi teste mešanja olj z LCO2. Pri eksperimentih smo preučevali vpliv pretoka LCO2 in MQL, z uporabo šestih različnih olj, na sile pri obdelavi in obstojnost orodja. Ugotovili smo, da z večanjem pretoka LCO2 sile med obdelavo rastejo, zaradi podhladitve materiala. Prav tako sile rastejo ob zmanjšanju pretoka MQL. Ugotovili smo, da je izbira pravega olja za mazanje ključna, saj dosegamo z optimalnim oljem daljšo obstojnost in višjo produktivnost orodja.

Language:Slovenian
Keywords:frezanje, titan, trohoidna strategija, CO2, MQL, obstojnost
Work type:Master's thesis/paper
Typology:2.09 - Master's Thesis
Organization:FS - Faculty of Mechanical Engineering
Year:2025
Number of pages:XVII, [1] f. pril., 54 str.
PID:20.500.12556/RUL-168818 This link opens in a new window
UDC:621.941:617.583-089.843:669.295(043.2)
COBISS.SI-ID:235210243 This link opens in a new window
Publication date in RUL:26.04.2025
Views:348
Downloads:35
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Secondary language

Language:English
Title:Machining of the lower part knee implant pockets in titanium alloy Ti6Al4V
Abstract:
This research explores the machining of titanium using trochoidal milling, focusing on optimizing machining conditions to maximize productivity and tool durability. A key aspect of the study is the implementation of a coolant-lubricant supply system that delivers a mixture of liquid carbon dioxide (LCO₂) and minimum quantity lubrication (MQL). The primary objective is to analyze how varying the flow rates of LCO₂ and MQL affects machinability, particularly by measuring cutting forces and assessing the influence of different lubricating oils. To conduct the experiments, we set up a Kistler measuring system to capture cutting forces and sound intensity, along with a measuring microscope for detailed analysis. Additionally, we prepared the raw titanium material, selected appropriate cutting tools, and configured the LCO₂ and MQL supply system. Preliminary tests were also carried out to evaluate the mixing behavior of various oils with LCO₂. The experimental results indicate that increasing the LCO₂ flow rate leads to higher cutting forces due to material subcooling. Similarly, a reduction in the MQL flow rate results in increased forces, negatively impacting machinability. Furthermore, the selection of lubricating oil plays a critical role, as the optimal oil formulation significantly enhances tool life and overall machining efficiency.

Keywords:milling, titanium, trochoidal strategy, CO2, MQL, tool life

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