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Tytuł artykułu

Computer aided adaptive system design with engineering systematics and manufacturing

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Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
This research practically discusses and presents the stages of design process in product development. Design process was realized through CATIA. The product developed is an agricultural device called as “disc harrow”. Therefore, agricultural details are presented together with machine design. A roller system is added to disc harrow in this study. Thus; the current system and the additional roller system are discussed with the principles of methodological construction and design objectives are defined. Both the current system and the additional roller system are designed in parallel with these objectives. Structural stress analysis is performed at different kinetic positions of the disc harrow connection of the roller system. System design is achieved by considering the feedback from such analyses and design objectives. The hereby design is obtained. The additional roller system is mounted and field survey is carried out. Contribution of the roller to disc harrow process, defined design objectives, ratio of the realization of design objectives and results of stress analyses are evaluated.
Twórcy
autor
  • Department of Mechanical Engineering, Trakya University, Edirne 22100, Turkey
Bibliografia
  • 1.Agrawal M.S. and Razik M. A review on study of analysis of chassis. International Journal of Modern Engineering Research (IJMER), 3(2), 2013, 1135–1138.
  • 2.Agrawal M.S. Finite element analysis of truck chassis frame, International Research Journal of Engineering and Technology (IRJET), 2(3), 2015, 1949–1956.
  • 3.Alexandru P.H., Rudy M., Daniel V., Anton H., Ioan P. and Radu D. Modal analysis using fem of three active elements for an agricultural machine, Actual Tasks on Agricultural Engineering, Symposium 43,2013, 201–209.
  • 4.Arvidsson J. Energy use efficiency in different tillage systems for winter wheat on a clay and silt loam in Sweden Department of Soil and Environment, Swedish University of Agricultural Sciences, 33, 2010, 250–256.
  • 5.Arvidsson J., Keller T. and Gustafsson K. Specific draught for mouldboard plough, chisel plough and disc harrow at different water contents, Soil & Tillage Research, 79, 2004, 221–231.
  • 6.Irsel G., Altinbalik T. and Can Y. Failure investigation of the disc harrow profiles and redesigning by catia analysis, Applied Mechanics and Materials, 729, 2015, 181–186.
  • 7.Irsel G. Stress analysis and design optimization with CATIA, Applied Computer Science, 12(1), 2016, 27–39.
  • 8.Javadi A. and Hajiahmad A.Effect of a new combined ımplement for reducing secondary tillage operation, Internatıonal Journal of Agriculture & Biology, 8 (6), 2006, 724–727.
  • 9.Karaoglu C. and Kuralay S. Stress analysis of a truck chassis with riveted joints, Finite Elements in Analysis and Design, 38, 2002, 1115–1130.
  • 10.Karaçam F. and Timarci T. Stacking sequence optimization of composite beams with different layer thicknesses, Advances in Science and Technology Research Journal, 9(26), 2015, 7–11.
  • 11.Krishan K. and Aggarwal L. A finite element approach for analysis of a multi leaf spring using CAE tools, Research Journal of Recent Sciences, 1(2), 2012, 92–96.
  • 12.Kocer F. Multi-disciplinary design of an aircraft landing gear using concept design and optimization techniques, Proceedings of NAFEMS World Congress, 2007, 1–7.
  • 13.Kotari S. and Gopinath V. Static and dynamic analysis on tarta chassis, International Journal of Modern Engineering Research (IJMER), 2(1), 2012, 86–94.
  • 14.Kutay G. Construction systematics, http://www.guven-kutay.ch/konstruksiyon/30_00_ks_giris.pdf, Turkish, 2009.
  • 15.Loghavi M. and Hosseinpoor A. Investigating the effect of attaching roller to moldboard plow on primary and secondary tillage operation, Proceeding of Second National Congress on Farm Machinery and Mechanization, Karaj, Iran, 2002.
  • 16.Magdziak M The calculation of the nominal data of a turbine blade with the use of CAD software, MATEC Web of Conferences, 28, 2015, 1–4.
  • 17.Marques Silva Soares J.M.C.N. Description standards of primary tillage implements, Soil & Tillage Research, 57, 2000, 173–176.
  • 18.Nor M.A.M., Rashida H., Mahyuddin W.M.F.W., Azlan M.A.M. and Mahmud J. Stress analysis of a low loader chassis, Procedia Engineering, 41, 2012, 995–1001.
  • 19.Ozturk I. and Bastaban S.A. Research on effect of tillage implement and machines on soil aggregation, porosity and surface smoothness in seedbed preparation. International Conference on Mechanization and Energy in Agriculture, Kusadasi, Turkey, 1993.
  • 20.Rahman R.A., Tamin M.N. and Kurdi O. Stress analysis of heavy duty truck chassis as a preliminary data for its fatigue life prediction using FEM, Jurnal Mekanikal, 26, 2008, 76–85.
  • 21.Pietola L.M. Root growth dynamics of spring cereals with discontinuation of mouldboard ploughing. Soil Tillage Res. J., 80, 2005, 103–114.
  • 22.Serrano J.M., Peça J.O., Silva J.M., Pinheiro A. and Carvalho M., Tractor energy requirements in disc harrow systems, Biosystems Engineering, 98, 2007, 286–296.
  • 23.Serrano J.M.P.J.O., Pinheiro A., Carvalho M., Nunes M., Ribeiro L. and Santos F. The Effect ofGang Angle of Of fset Disc Harrows on Soil Tilth, Work Rate and Fuel Consumption Biosystems Engineering 84 (2), 2003, 171–176.
  • 24.http://www.skf.com/group/knowledge-centre/engineering-tools/skfbearingcalculator.html.
  • 25.Tiwari S.K. and Joshi U.K. Stress analysis of mating involute spur gear teeth, International Journal of Engineering Research & Technology (IJERT), 1(9), 2012, 1–12.
  • 26.Vasovic I. and Ristić M., Radosavljevic M., Milutinovic Z. and Kocic M. Stress analyses and optimization of bus chassis using software package CATIA and comparative methods, Welding and Material Testing, 4, 2013, 19–22.
  • 27.Zahariea D. Structural analysis of a claw coupling, International Journal of Modern Manufacturing Technologies, .3(2), 2011, 117–122.
Uwagi
Opracowanie ze środków MNiSW w ramach umowy 812/P-DUN/2016 na działalność upowszechniającą naukę (zadania 2017)
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-d3af9f8c-cb0f-4634-8770-301edca34162
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