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Comparative Analyses of the 4WD Tractor Performance with Two Different Mouldboard Plow Bottoms by Using FEM

Yıl 2008, , 183 - 192, 01.05.2008
https://doi.org/10.1501/Tarimbil_0000000510

Öz

A theoretical work was performed to model and design the bottom of a cylindroidal type mouldboard plow. The aim of the work was to compare and evaluate the performance of the two different types of mouldboard plow designed and type 113 in two soil depths 15-20 and 20-25 cm and three forward speeds 4.4, 6, 9 km/h . Some design indicators involved in the study; draft force, von mises stress and bending moment which were analyzed with using a finite element methods FEM . Some soil indicators involved; plowing appearance, the degree of tilth, the evens of the plowing surface and the angle of inclination. The data were then analyzed statistically with using randomized complete block design for all indicators and characteristics. Designed mouldboard plow was found to be significantly superlative over the 113 mouldboard plow with all design indicators since the draft force, von mises stress and bending moment were less. The results showed draft force, von mises stress and bending moment increased by increasing forward speed with a constant depth, and also showed the draft force, von mises stress and bending moment increased by increasing the depth with a constant speed for both plows in the theoretical and experimental results. Best performance results were obtained in 15-20 cm soil depth with 9 km/h forward speed

Kaynakça

  • AL-banna,T.H., Karim, S., M. Amin and A.H.Salman. 1986. Effect of traveling speeds of some plows on tilth quality at Eski-kalak. Zanco, 4(2): 51-62.
  • AL-tahan, Y.H., S.H.Amin and H.H.AL-Abdullah. 1995. Effect of plowing speeds on the field performance of moldboard and disc plows. J. Agric. & forestry CollegeMosul, 27(1): 77-80.
  • ASAE. D497. 1992. Agricultural machinery data-Draft and power requirements. In ASAE standards. 293-299. St. Joseph.
  • Bernacki,H., J.Haman, Cz. Kanafojski. 1972. Agricultural Machines, Theory and Contraction. Vol.1, Spring field, 111: Nat. Technical Information Servece.
  • Culpin, C., 1981. Farm Machinery. 10th Ed, Granda, London, U.K.
  • Dawod, Kh.M. and Z.Abdulyas. 1990. Statistical procedures for Agricultural researches. Printed in Dar AL-kutub, Mosul Univ., Iraq.
  • Gill, W.R. and G.E. Vanden Berg. 1967. Soil dynamics in Tillage and Traction.U.S.Gorernment printing office, Washinghton, DC.
  • Gustev, N. 1978. Machine elements desigen & calculation in Mechanical engineering. Vol 1, springer-verlg, Allied publishers private limited.
  • Mulla A.S.M.J. 1989. Mechanics of material. Translated from Aeian john hiran. Printed in Dar AL-kutub, Mosul Univ., Iraq
  • Rahmet-Allah, H.B. 1985. Principles of material engineering. Translated from Billy. Printed in, Mosul Univ., Iraq.
  • Tahir, H.Th. 2004. Mechanical design of moldboard plow bottom throw stress analyses and performance measurement. Ph.D. Thesis, Mosul Univ., Iraq.
  • Tahir, H.Th. 2007. Performance efficiency of 4WD tractor with two moldboard plows (the designed and usual 113) and measuring some power requirement and soil indicators.
  • A special issue for the first scientific conference for agricultural researches. Kirkuk University. J. Kirkuk Univ., 2 (2): 104-125.
  • Taniguchi, T; J.M. Makanga; K. Ohtomo, and T. Kishimoto. 1999. Draft and soil Manipulation by a Moldboard plow under Different Forward speed and body attachments. Transaction of ASAE, 42 (6):1517-1521.
  • Wilkinson, R.H. and O.A.Braunbeck. 1977. Elements of agricultural machinery. Vol(1), FAO Agricultural Services Bulletin. Rome. Italy.
  • Zeytinoglu, M. 2002. A Research on strength of the curved beam of plow by using Finite Elements Method. J. Agric. College- Bursa, 16 (2): 169-176.

Dört Tekerleği Muharrik Traktör ile Çekilen İki Farklı Kulaklı Pulluğun Performanslarının FEM ile Karşılaştırmalı Olarak Belirlenmesi

Yıl 2008, , 183 - 192, 01.05.2008
https://doi.org/10.1501/Tarimbil_0000000510

Öz

Silindirik formda bir kulaklı pulluk model ve tasarımı için teorik bir çalışma yapılmıştır. Bu çalışmada dizayn edilen pulluk ile tip 113 pulluğunun performansları iki farklı toprak derinliğinde 15-20 ve 20-25 cm ve üç farklı hız kademesinde 4.4, 6,9 km/h karşılaştırmalı olarak yapılmıştır. Çalışmada ele alınan dizayn parametreleri; çeki kuvveti, von misses stresi, eğilme momenti sonlu elemanlar yöntemi FEM ile analiz edilmiştir. Ele alınan bazı toprak göstergeleri; pulluk izi, eğim derecesi, pulluk yüzey ve açısıdır. Tesadüfi deneme blokları kullanılarak elde edilen veriler istatistiksel olarak analiz edilmiştir. Dizayn edilen kulaklı pulluğun tüm dizayn göstergelerinde çeki kuvveti, von misses stresi ve eğilme momenti bakımından, 113 tip pulluktan daha az olmak suretiyle daha iyi performans gösterdiği bulunmuştur. Sonuçlar, ilerleme hızı arttıkça çeki kuvveti, von misses stresi ve eğilme momentinin arttığını göstermiştir. Aynı şekilde artan toprak işleme derinliklerinde çeki kuvveti, von misses stresi ve eğilme momentinin de arttığı görülmüştür. En iyi performans ise 15-20 cm toprak derinliğinde 9 km/h ilerleme hızında elde edilmiştir

Kaynakça

  • AL-banna,T.H., Karim, S., M. Amin and A.H.Salman. 1986. Effect of traveling speeds of some plows on tilth quality at Eski-kalak. Zanco, 4(2): 51-62.
  • AL-tahan, Y.H., S.H.Amin and H.H.AL-Abdullah. 1995. Effect of plowing speeds on the field performance of moldboard and disc plows. J. Agric. & forestry CollegeMosul, 27(1): 77-80.
  • ASAE. D497. 1992. Agricultural machinery data-Draft and power requirements. In ASAE standards. 293-299. St. Joseph.
  • Bernacki,H., J.Haman, Cz. Kanafojski. 1972. Agricultural Machines, Theory and Contraction. Vol.1, Spring field, 111: Nat. Technical Information Servece.
  • Culpin, C., 1981. Farm Machinery. 10th Ed, Granda, London, U.K.
  • Dawod, Kh.M. and Z.Abdulyas. 1990. Statistical procedures for Agricultural researches. Printed in Dar AL-kutub, Mosul Univ., Iraq.
  • Gill, W.R. and G.E. Vanden Berg. 1967. Soil dynamics in Tillage and Traction.U.S.Gorernment printing office, Washinghton, DC.
  • Gustev, N. 1978. Machine elements desigen & calculation in Mechanical engineering. Vol 1, springer-verlg, Allied publishers private limited.
  • Mulla A.S.M.J. 1989. Mechanics of material. Translated from Aeian john hiran. Printed in Dar AL-kutub, Mosul Univ., Iraq
  • Rahmet-Allah, H.B. 1985. Principles of material engineering. Translated from Billy. Printed in, Mosul Univ., Iraq.
  • Tahir, H.Th. 2004. Mechanical design of moldboard plow bottom throw stress analyses and performance measurement. Ph.D. Thesis, Mosul Univ., Iraq.
  • Tahir, H.Th. 2007. Performance efficiency of 4WD tractor with two moldboard plows (the designed and usual 113) and measuring some power requirement and soil indicators.
  • A special issue for the first scientific conference for agricultural researches. Kirkuk University. J. Kirkuk Univ., 2 (2): 104-125.
  • Taniguchi, T; J.M. Makanga; K. Ohtomo, and T. Kishimoto. 1999. Draft and soil Manipulation by a Moldboard plow under Different Forward speed and body attachments. Transaction of ASAE, 42 (6):1517-1521.
  • Wilkinson, R.H. and O.A.Braunbeck. 1977. Elements of agricultural machinery. Vol(1), FAO Agricultural Services Bulletin. Rome. Italy.
  • Zeytinoglu, M. 2002. A Research on strength of the curved beam of plow by using Finite Elements Method. J. Agric. College- Bursa, 16 (2): 169-176.
Toplam 16 adet kaynakça vardır.

Ayrıntılar

Birincil Dil İngilizce
Bölüm Research Article
Yazarlar

Saad Al-deen Bu kişi benim

M. Amen Ergech Bu kişi benim

Hussein Th. Tahir Bu kişi benim

Yayımlanma Tarihi 1 Mayıs 2008
Gönderilme Tarihi 1 Ocak 2008
Yayımlandığı Sayı Yıl 2008

Kaynak Göster

APA Al-deen, S., Ergech, M. A., & Tahir, H. T. (2008). Comparative Analyses of the 4WD Tractor Performance with Two Different Mouldboard Plow Bottoms by Using FEM. Journal of Agricultural Sciences, 14(02), 183-192. https://doi.org/10.1501/Tarimbil_0000000510

Journal of Agricultural Sciences is published open access journal. All articles are published under the terms of the Creative Commons Attribution License (CC BY).