References
[1] Limpert, R. Brake design and safety, SAE, 1992.
[2] Güleryüz, İ. C. Modelling, Analysis and Experimental Verification of Pneumatic BrakeSystem. MSc Thesis, Izmir Katip Celebi University, TR, 2017.
[3] Day, A. J. Braking of road vehicles. Butterworth-Heinemann, 2014.
[4] Reif, K. Brakes, Brake control and driver assistance systems. Weisbaden, Germany, SpringerVieweg, 2014.
[5] Sayim, I. and Zhang, D. Optimization of the brake factor for an S-Cam foundation brakeusing RSM/Optimizacija zavornega faktorja pri bobnastih zavorah z S-odmikalom po metodiodzivne povrsine. Strojniski Vestnik-Journal of Mechanical Engineering, 2016; 62.9: 503-511.
[6] Hecht Basch, R., Fash, J., Hasson, R., et al. Initial dynamometer and laboratory evaluationsof thermally sprayed aluminium brake disc. Barton D, Earl S, Brakes, 2000; 11-12.
[7] Sergent, N., Tirovic, M. and Voveris, J., Design optimization of an opposed piston brakecaliper. Engineering Optimization, 2014; 46.11: 1520-1537.
[8] Mathur, A. and Kurna, S. Weight optimization of Axle Beam using Optistruct, In: AltairTechnology Conference, India, 2015.
[9] Topac, M. M. and Atak, M. Optimal design of a rigid front axle beam for trucks, In: 1stInternational Mediterranean Science and Engineering Congress (IMSEC 2016), ÇukurovaUniversity, Congress Center, Adana/Turkey, October 26-28 2016, paper no. 453.
[10] Topac, M. M., Kuralay, N. S. and Bahar, I. Mass and Stress Optimisation of a Multi-PurposeVehicle Front Axle Differential Housing For Various Driving Conditions, Duzce UniversityJournal of Science & Technology, 2016; 4: 501-513.
[11] Topac, M. M., Bahar, E., Kaplan, A., et al. Design of a lower wishbone for a military vehicleindependent front suspension using topology optimization. In IDEFIS 2017: 2ndInternational Defence Industry Symposium, 2017, pp.333-342.
[12] Yücel, U., Yılmaz, B., Güleryüz, İ. C., et al. A back-plate weight optimization of a heavyduty s-cam drum brake, In: International Mechanical Engineering and TechnologiesConference Proceedings (MECHATECH'16), May 17-18 2016, Istanbul/Turkey, pp.218-235.
[13] Güleryüz, İ. C., Yılmaz, B., Lightweight design of a torque plate of Z-cam drum brake forheavy duty vehicles. International Journal of Automotive Science and Technology, 2019,3.2: 42-50.
[14] Zhang, Y., Zhang, H., and Lu, C. Study on parameter optimization design of drum brakebased on hybrid cellular multiobjective genetic algorithm. Mathematical Problems inEngineering, 2012; 734193.
[15] Ragothaman, G., Krishnan, R. A., Balamurugan, A., et al. Design and Analysis of SCamshaft And Torque Plate, International Journal of Pure and Applied Mathematics, 2018;119.12: 13515-13522.
[16] Kuralay, N. S. Motorlu Taşıtlar; Temel ve Tasarım Esasları, Yapı Elemanları,Izmir: TMMOB Makina Mühendisleri Odası, 2008.
[17] Johnsen, S. Structural topology optimization: basic theory, methods and applications. MScThesis, Institutt for produktutvikling og materialer, 2013.