Profile URL: https://hdl.handle.net/20.500.13091/12032
Job Title:Dr. Öğr. Gör.
Email Address:yckagitci@ktun.edu.tr
Main Affiliation:07. 16. Department of Machinery and Metal Technologies
Status: Current Staff
ORCID:
0000-0002-6544-5284
0000-0002-6544-5284Scopus ID:
56941920100
56941920100YÖK Akademik: 94AAF0D235FA5F55
Google Scholar:
QeJQWzEAAAAJ
QeJQWzEAAAAJWeb of Science ID:
ABB-3185-2020
ABB-3185-2020Name Variants:
Kağıtcı, Y. Çağlar Kağıtcı, Y. Ç.
2 results
Scholarly Output Search Results
Now showing 1 - 2 of 2
Article Citation - Scopus: 1Determination of Temperature Effects on Cortical Bone Milling Using Taguchi Method(Springer Nature, 2025-03-20) Kagitci, Y.C.; Neseli, S.In medical applications, minimizing thermal damage to biological tissue is of utmost importance for cell viability. In this experimental study, the effects of processing parameters on temperature variation during milling of cortical bone were investigated. Using the Taguchi method, optimization of parameters was performed to identify combinations that minimize the thermal rise, thus reducing the risk of necrosis and at the same time preserving bone viability. The effect of cutting tool rotational speed, feed rate, depth of cut and tool geometry on temperature changes in cortical bone samples was analyzed. Bovine femoral cortical bone samples were subjected to controlled milling trials in which temperature changes near the cutting interface were recorded in real time using a camera with a sensitive thermal sensor. Analysis of variance (ANOVA) was used to determine the statistical significance of the effect of parameters on temperature rise. The findings of the study show that there are significant interactions between the machining parameters affecting the thermal response. Statistical analysis showed that the depth of cut was the most important factor on cortical bone processing temperature, contributing 52.1% in reducing temperature values. It is followed by the number of cutting tool teeth with 23.77% and rotational speed with 18.59%. The optimal machining conditions that minimize thermal damage identified by the study provide effective baseline information for safer and more efficient bone milling procedures. © The Author(s) 2025.Article Citation - WoS: 2The Effect of Cutting Forces on Bone Related Operational Processes: a Literature Review(Konya Teknik Univ, 2024) Kağıtçı, Yusuf Çaglar; Neseli, SüleymanCutting mechanics must be known in terms of solving the mechanistic problems to be encountered as a result of the operational processes on the bone. In today's applications, operational procedures such as milling, drilling, cutting and screwing can be performed on the bone as a surgical procedure. The uncontrollable cutting forces that occur as a combination of the microstructure of the bone and the geometric features of the cutting tools and the resulting localized heat (fracture and necrosis) may cause bone damage. The fracture of the cutting tool or the cut bone due to the cutting force depends on the intensity and direction of the forces applied during the operation. In this study, a review of the studies in the literature on what the factors causing bone damage and their effects are reduced. In addition, the information given in this study will be useful as a one-stop document for technicians, engineers and researchers who need information on tool design, cutting force measurements in bone processing operations (in surgical applications such as milling, drilling, cutting, etc.) of cutting forces.
Research Topics
Domains
Physical SciencesHealth Sciences
Fields
EngineeringDentistryMedicine
Subfields
Mechanical EngineeringOral SurgeryBiomedical EngineeringOrthodonticsSurgery
Specific Research Areas
Advanced machining processes and optimization
Dental Implant Techniques and Outcomes
Bone Tissue Engineering Materials
Dental materials and restorations
Orthopaedic implants and arthroplasty
Sustainable Development Goals
SDG data is not available

Documents
2
Citations
31
h-index
1

Documents
3
Citations
30
Publication Collaboration
| Affiliation Name | Count |
|---|---|
| Selçuk University | 3 |
| Konya Technical University | 2 |
1 / 1
Data obtained from OpenAlex
| Journal | Count |
|---|---|
| Arabian Journal for Science and Engineering | 1 |
| Konya Journal of Engineering Sciences | 1 |
Current Page: 1 / 1

Scholarly Output
2
Articles
2
Views / Downloads
0/0
Supervised MSc Theses
0
Supervised PhD Theses
0
WoS Citation Count
2
Scopus Citation Count
1
Patents
0
Projects
0
WoS Citations per Publication
1.00
Scopus Citations per Publication
0.50
Open Access Source
2
Supervised Theses
0
Scopus Quartile Distribution
Competency Cloud

