Tamer Sınmazçelik

3.0k total citations · 1 hit paper
102 papers, 2.4k citations indexed

About

Tamer Sınmazçelik is a scholar working on Mechanics of Materials, Mechanical Engineering and Polymers and Plastics. According to data from OpenAlex, Tamer Sınmazçelik has authored 102 papers receiving a total of 2.4k indexed citations (citations by other indexed papers that have themselves been cited), including 55 papers in Mechanics of Materials, 42 papers in Mechanical Engineering and 33 papers in Polymers and Plastics. Recurrent topics in Tamer Sınmazçelik's work include Tribology and Wear Analysis (34 papers), Erosion and Abrasive Machining (27 papers) and Mechanical Behavior of Composites (21 papers). Tamer Sınmazçelik is often cited by papers focused on Tribology and Wear Analysis (34 papers), Erosion and Abrasive Machining (27 papers) and Mechanical Behavior of Composites (21 papers). Tamer Sınmazçelik collaborates with scholars based in Türkiye, Kazakhstan and United Kingdom. Tamer Sınmazçelik's co-authors include Egemen Avcu, Mustafa Özgür Bora, Onur Çoban, Timur Canel, Erhan Akman, A. Demir, Sinan Fi̇dan, Taner Yılmaz, Volkan Günay and A. Armağan Arıcı and has published in prestigious journals such as Journal of Materials Science, Journal of Materials Processing Technology and Journal of Applied Polymer Science.

In The Last Decade

Tamer Sınmazçelik

97 papers receiving 2.3k citations

Hit Papers

A review: Fibre metal laminates, background, bonding type... 2011 2026 2016 2021 2011 250 500 750

Peers — A (Enhanced Table)

Peers by citation overlap · career bar shows stage (early→late) cites · hero ref

Name h Career Trend Papers Cites
Tamer Sınmazçelik Türkiye 25 1.4k 1.3k 600 494 285 102 2.4k
Bruno Castanié France 31 1.7k 1.2× 1.6k 1.2× 478 0.8× 284 0.6× 689 2.4× 96 2.6k
Maksim Antonov Estonia 30 2.1k 1.5× 1.2k 0.9× 188 0.3× 1.0k 2.0× 256 0.9× 165 2.8k
Mustafa Özgür Bora Türkiye 18 809 0.6× 1.2k 0.9× 469 0.8× 296 0.6× 281 1.0× 76 1.7k
Onur Çoban Türkiye 18 775 0.6× 1.1k 0.9× 440 0.7× 278 0.6× 274 1.0× 47 1.6k
R. Gnanamoorthy India 28 1.7k 1.3× 1.5k 1.1× 522 0.9× 787 1.6× 51 0.2× 122 2.5k
Carlos Santiuste Spain 27 1.1k 0.8× 1.1k 0.8× 457 0.8× 333 0.7× 558 2.0× 53 2.0k
Sharnappa Joladarashi India 25 972 0.7× 685 0.5× 588 1.0× 410 0.8× 430 1.5× 98 1.8k
U. S. Tewari India 22 749 0.6× 1.1k 0.9× 654 1.1× 376 0.8× 156 0.5× 42 1.7k
Zouheir Fawaz Canada 27 668 0.5× 1.2k 0.9× 518 0.9× 266 0.5× 469 1.6× 79 1.9k
C. K. H. Dharan United States 23 1.4k 1.0× 949 0.7× 254 0.4× 577 1.2× 461 1.6× 55 2.3k

Countries citing papers authored by Tamer Sınmazçelik

Since Specialization
Citations

This map shows the geographic impact of Tamer Sınmazçelik's research. It shows the number of citations coming from papers published by authors working in each country. You can also color the map by specialization and compare the number of citations received by Tamer Sınmazçelik with the expected number of citations based on a country's size and research output (numbers larger than one mean the country cites Tamer Sınmazçelik more than expected).

Fields of papers citing papers by Tamer Sınmazçelik

Since Specialization
Physical SciencesHealth SciencesLife SciencesSocial Sciences

This network shows the impact of papers produced by Tamer Sınmazçelik. Nodes represent research fields, and links connect fields that are likely to share authors. Colored nodes show fields that tend to cite the papers produced by Tamer Sınmazçelik. The network helps show where Tamer Sınmazçelik may publish in the future.

Co-authorship network of co-authors of Tamer Sınmazçelik

This figure shows the co-authorship network connecting the top 25 collaborators of Tamer Sınmazçelik. A scholar is included among the top collaborators of Tamer Sınmazçelik based on the total number of citations received by their joint publications. Widths of edges represent the number of papers authors have co-authored together. Node borders signify the number of papers an author published with Tamer Sınmazçelik. Tamer Sınmazçelik is excluded from the visualization to improve readability, since they are connected to all nodes in the network.

All Works

20 of 20 papers shown
1.
Sınmazçelik, Tamer, et al.. (2025). Recycled tire rubber as reinforcement for erosion‐resistant epoxy composites. Polymer Engineering and Science. 65(3). 1386–1403. 2 indexed citations
2.
Sınmazçelik, Tamer, et al.. (2025). Effects of polytetrafluoroethylene particle reinforcement and seawater aging on solid particle erosion behavior of epoxy composites. Materials Research Express. 12(5). 55305–55305.
3.
Avcu, Yasemin Yıldıran, et al.. (2025). Effect of shot peening on the cavitation erosion of manganese aluminium bronze alloy: Microstructural and morphological insights. Materials Letters. 394. 138659–138659. 1 indexed citations
4.
Sınmazçelik, Tamer, et al.. (2025). Effect of heat treatment on hydrothermal aging of CF/PEEK composites. Journal of Composite Materials. 59(17). 2049–2056. 2 indexed citations
5.
Fi̇dan, Sinan, et al.. (2024). Effect of solid lubricant additives on solid particle erosion characteristics of rigid and toughened epoxy resins. Journal of Vinyl and Additive Technology. 30(6). 1468–1484. 2 indexed citations
6.
Fi̇dan, Sinan, et al.. (2024). Understanding the effect of solid lubricants on scratch behavior in epoxy resins: An experimental and statistical approach. Polymer Composites. 45(8). 7346–7363. 3 indexed citations
7.
Fi̇dan, Sinan, et al.. (2024). Effect of filling materials on the tribological performance of polytetrafluoroethylene in different wear modes. Polymer Composites. 45(15). 13561–13577. 3 indexed citations
9.
Fi̇dan, Sinan, et al.. (2024). Investigation of surface structuring and oxidation performance of Inconel 718 superalloy by laser remelting with different patterns. Engineering Failure Analysis. 167. 108974–108974. 2 indexed citations
10.
Fi̇dan, Sinan, et al.. (2024). Optimization of laser-texturing process parameters of Ti6Al4V alloys using metaheuristic algorithms. Proceedings of the Institution of Mechanical Engineers Part E Journal of Process Mechanical Engineering. 240(1). 789–801. 2 indexed citations
11.
13.
Kodal, Mehmet, et al.. (2023). Solid particle erosion and scratch behavior of novel scrap carbon fiber/glass fabric/polyamide 6.6 hybrid composites. Polymer Composites. 44(10). 7197–7211. 9 indexed citations
14.
Fi̇dan, Sinan, et al.. (2022). Effect of particle flow direction in particle erosion of macro texturized polymer surfaces. Progress in Additive Manufacturing. 8(2). 179–194. 1 indexed citations
15.
Canel, Timur, Ersin Kayahan, Sinan Fi̇dan, & Tamer Sınmazçelik. (2021). Laser process parameter optimization of dimple created on oriented carbon fiber reinforced epoxy composites. Journal of Composite Materials. 55(27). 4029–4043. 4 indexed citations
16.
Sınmazçelik, Tamer, et al.. (2021). Investigation of mechanical and tribological behaviour of expanded perlite particle reinforced polyphenylene sulphide. Proceedings of the Institution of Mechanical Engineers Part L Journal of Materials Design and Applications. 235(10). 2356–2367. 6 indexed citations
17.
Sınmazçelik, Tamer, et al.. (2020). 1.2379 Soğuk İş Takım Çeliği Delme Zımbalarında AlTiN, TiSiN ve TiN, PVD Kaplamaların Takım Ömrüne Etkisi. DergiPark (Istanbul University). 3(2). 154–159.
18.
Sınmazçelik, Tamer, et al.. (2020). Effect of mussel shell reinforcement on mechanical and tribological behavior of polyphenylene sulfide composites. Journal of Thermoplastic Composite Materials. 35(9). 1279–1302. 13 indexed citations
19.
Çoban, Onur, et al.. (2008). Fracture morphology and deformation characteristics of repeatedly impacted thermoplastic matrix composites. Materials & Design (1980-2015). 30(3). 628–634. 29 indexed citations
20.
Milcan, Abtullah, et al.. (2005). Evaluation of Cyanoacrylate Augmentation of Transpedicular Screw Pullout Strength. Journal of Spinal Disorders & Techniques. 18(6). 511–514. 10 indexed citations

Rankless uses publication and citation data sourced from OpenAlex, an open and comprehensive bibliographic database. While OpenAlex provides broad and valuable coverage of the global research landscape, it—like all bibliographic datasets—has inherent limitations. These include incomplete records, variations in author disambiguation, differences in journal indexing, and delays in data updates. As a result, some metrics and network relationships displayed in Rankless may not fully capture the entirety of a scholar's output or impact.

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