PL EN


Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników
Tytuł artykułu

Frictional properties of selected seeds

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The thickness, width, length and weight of five seed species (buckwheat, vetch, pea, lupine and faba bean) and their external friction angle were determined on two types of surfaces - steel and rubber. The experiment was performed with the use of a an inclined plane with an adjustable angle of inclination that measures the angle of external friction and the time taken by seeds to travel a given distance, which supports the determination of the coefficient of kinetic friction. The measured parameters were used to calculate arithmetic and geometric mean diameter, aspect ratio and sphericity index. The dimensions, weight and the calculated indicators of the examined seeds did not significantly affect their coefficients of static and kinetic friction or their coefficients of rolling resistance and rolling friction. The studied parameters were largely influenced by the type of friction surface, and significantly lower average values were reported for steel than rubber. In the studied seed species, the static friction coefficient was determined in the range of 0.187 to 0.582, kinetic friction coefficient - 0.134 to 0.479, rolling resistance coefficient - 0.148 to 0.529 and rolling friction coefficient - 0.29 to 1.80 mm.
Twórcy
  • Department of Heavy Duty Machines and Research Methodology, University of Warmia and Mazury in Olsztyn, Poland
autor
  • Department of Heavy Duty Machines and Research Methodology, University of Warmia and Mazury in Olsztyn, Poland
autor
  • Department of Heavy Duty Machines and Research Methodology, University of Warmia and Mazury in Olsztyn, Poland
  • Department of Heavy Duty Machines and Research Methodology, University of Warmia and Mazury in Olsztyn, Poland
Bibliografia
  • AFZALINIA S., ROBERGE M. 2007. Physical and mechanical properties of selected forage materials. Canadian Biosystems Engineering, 49: 2.23-2.27.
  • ALTUNTAS E., DEMIRTOLA H. 2007. Effect of moisture content on physical properties of some grain legume seeds. New Zealand Journal of Crop and Horticultural Science, 35: 423-433.
  • BAGHERPOUR H., MINAEI S., KHOSHTAGHAZA M.H. 2010. Selected physico-mechanical properties of lentil seed. International Agrophysics, 24: 81-84.
  • BOAC J.M., CASADA M.E., MAGHIRANG R.G., HARNER III J.P. 2010. Material and interaction properties of selected grains and oilseeds for modeling discrete particles. Transactions of the ASABE, 53(4): 1201-1216.
  • DARVISHI H. 2012. Moisture-dependent physical and mechanical properties of white sesame seed. American-Eurasian Journal of Agricultural & Environmental Sciences, 12(2): 198-203.
  • DAVIES R.M., EL-OKENE A.M. 2009. Moisture-dependent physical properties of soybeans. International Agrophysics, 23: 299-303.
  • FIROUZI S., ALIZADEH M.R., AMINPANAH H., VISHEKAEI M.N.S. 2012. Some moisture-dependent physical properties of bean seed (Phaseolus vulgaris L.). Journal of Food, Agriculture & Environment, 10(3-4): 713-717.
  • FRĄCZEK J. 1999. Tarcie ziarnistych materiałów roślinnych. Zeszyty Naukowe Akademii Rolniczej im. H. Kołłątaja w Krakowie, Rozprawy, 252.
  • GHARIBZAHEDI S.M.T., MOUSAVI S.M., GSHAHDERIJANI M. 2011. A survey on moisture-dependent physical properties of castor seed (Ricinus communis L.). Australian Journal of Crop Science, 5(1): 1-7.
  • GREŃ J. 1984. Statystyka matematyczna. Modele i zadania. PWN, Warszawa.
  • GROCHOWICZ J. 1994. Maszyny do czyszczenia i sortowania nasion. AR, Lublin.
  • HORABIK J. 2001. Charakterystyka właściwości fizycznych roślinnych materiałów sypkich istotnych w procesach składowania. Acta Agrophysica, 54.
  • IDOWU D.O., ABEGUNRIN T.P., OLA F.A., ADEDIRAN A.A., OLANIRAN J.A. 2012. Measurement of some engineering properties of sandbox seeds (Hura crepitans). Agriculture and Biology Journal of North America, 3(8): 318-325.
  • IZLI N., UNAL H., SINCIK M. 2009. Physical and mechanical properties of rapeseed at different moisture content. International Agrophysics, 23: 137-145.
  • JOUKI M., KHAZAEI N. 2012. Some physical properties of rice seed (Oriza sativa). Research Journal of Applied Sciences, Engineering and Technology, 4(13): 1846-1849.
  • KABAS O., YILMAZ E., OZMERZI A., AKINCI I. 2007. Some physical and nutritional properties of cowpea seed (Vigna simensis L.). Journal of Food Engineering, 79: 1405-1409.
  • KALETA A., GÓRNICKI K. 2008. Safe grain storage - the study of the issue. Inżynieria Rolnicza, 1(99): 137-143 (article in Polish with an abstract in English).
  • KALINIEWICZ Z. 2011. Sito strunowe. Zgłoszenie patentowe nr P.396745, 24.10.2011.
  • KALINIEWICZ Z. 2013a. String sieve: design concept and parameters. Technical Sciences, 16(2): 119-129.
  • KALINIEWICZ Z. 2013b. Analysis of frictional properties of cereal seeds. African Journal of Agricultural Research, 8(45): 5611-5621.
  • KALINIEWICZ Z., GRABOWSKI A., LISZEWSKI A., FURA S. 2011. Analysis of correlations between selected physical attributes of Scots pine seeds. Technical Sciences, 14(1): 13-22.
  • KALINIEWICZ Z., POZNAŃSKI A. 2013. Variability and correlation of selected physical attributes of small-leaved lime (Tilia cordata Mill.) seeds. Sylwan, 157(1): 39-46 (article in Polish with an abstract in English).
  • KALINIEWICZ Z., TROJANOWSKI A. 2011. Variability analysis and correlation of selected physical properties of black alder seeds. Inżynieria Rolnicza, 8(133): 167-172 (article in Polish with an abstract in English).
  • KALKAN F., KARA M. 2011. Handling, frictional and technological properties of wheat as affected by moisture content and cultivar. Powder Technology, 213: 116-122.
  • KARA M., BASTABAN S., ÖZTÜRK I., KALKAN F., YILDIZ C. 2012. Moisture-dependent frictional and aerodynamic properties of safflower seeds. International Agrophysics, 26: 203-205.
  • KARAJ S., MÜLLER J. 2010. Determination of physical, mechanical and chemical properties of seeds and kernels of Jatropha curcas L. Industrial Crops and Products, 32: 129-138.
  • KIBAR H., ÖZTÜRK T. 2008. Physical and mechanical properties of soybean. International Agrophysics, 22: 239-244.
  • KILIÇKAN A., ÜÇER N., YALÇIN I. 2010. Moisture-dependent physical properties of black grape (Vitis vinifera L.) seed. Scientific Research and Essays, 5(16): 2226-2233.
  • KRAM B.B. 2006. Research on the coefficient of external friction of corn grain in humidity function. Inżynieria Rolnicza, 3(78): 175-182 (article in Polish with an abstract in English).
  • KRAM B.B. 2008. Investigation of the external friction coefficient and the angle of natural repose of cv. Bar and Radames lupine seeds. Inżynieria Rolnicza, 4(102): 423-430 (article in Polish with an abstract in English).
  • LAWROWSKI Z. 2008. Tribologia. Tarcie, zużywanie i smarowanie. Oficyna Wydawnicza Politechniki Wrocławskiej, Wrocław.
  • ŁUKASZUK J., MOLENDA M., HORABIK J., WIĄCEK J. 2009. Method of measurement of coefficient of friction between pairs of metallic and organic objects. Acta Agrophysica, 13(2): 407-418 (article in Polish with an abstract in English).
  • MOHSENIN N.N. 1986. Physical properties of plant and animal materials. Gordon and Breach Science Public, New York.
  • MOLENDA M., HORABIK J., GROCHOWICZ M., SZOT B. 1995. Tarcie ziarna pszenicy. Acta Agrophysica, 4. Instytut Agrofizyki im. Bohdana Dobrzańskiego, Lublin.
  • NOSAL S. 2012. Tribologia. Wprowadzenie do zagadnień tarcia, zużywania i smarowania. Wydawnictwo Politechniki Poznańskiej, Poznań.
  • RABIEJ M. 2012. Statystyka z programem Statistica. Helion, Gliwice.
  • RAZAVI S.M.A., FARAHMANDFAR R. 2008. Effect of hulling and milling on the physical properties of rice grains. International Agrophysics, 22: 353-359.
  • RIYAHI R., RAFIEE S., DALVAND M.J., KEYHANI A. 2011. Some physical characteristics of pomegranate, seeds and arios. Journal of Agricultural Technology, 7(6): 1523-1537.
  • RUDZIŃSKI R. 2011. Rules for storage and warehousing of goods of argicultural origin. Zeszyty Naukowe Uniwersytetu Przyrodniczo-Humanistycznego w Siedlcach, Seria: Administracja i Zarządzanie, 88: 113-126 (article in Polish with an abstract in English).
  • SHAROBEEM Y.F. 2007. Apparent dynamic friction coefficients for grain crops. Misr Journal of Agricultural Engineering, 24(3): 557-574.
  • SHIESHAA R.A., KHOLIEF R., EL MESEERY A.A. 2007. A study of some physical and mechanical properties of seed melon seed. Misr Journal of Agricultural Engineering, 24(3): 575-592.
  • SHOUGHY M.I., AMER M.I. 2006. Physical and mechanical properties of faba bean seeds. Misr Journal of Agricultural Engineering, 23(2): 434-447.
  • SOLOGUBIK C.A., CAMPAÑONE L.A., PAGANO A.M., GELY M.C. 2013. Effect of moisture content on some physical properties of barley. Industrial Crops and Products, 43: 762-767.
  • ŚLIPEK Z., KACZOROWSKI J., FRĄCZEK J. 1999. Analiza teoretyczno-doświadczalna tarcia materiałów ziarnistych. Ed. PTIR, Kraków.
  • TAHERI-GARAVAND A., NASSIRI A., GHARIBZAHEDI S.M.T. 2012. Physical and mechanical properties of hemp seed. International Agrophysics, 26: 211-215.
  • TARIGHI J., MAHMONDI A., RAD M.K. 2011. Moisture-dependent engineering properties of sunflower (var. Armaviriski). Australian Journal of Agricultural Engineering, 2(2): 40-44.
  • TASER O.F., ALTUNTAS E., OZGOZ E. 2005. Physical properties of Hungarian and common vetch seeds. Journal of Applied Sciences, 5(2): 323-326.
  • YALÇIN Y. 2007. Physical properties of cowpea (Vigna sinensis L.) seed. Journal of Food Engineering, 79: 57-62.
  • YALÇIN I., ÖZARSLAN C. 2004. Physical properties of vetch seed. Biosystems Engineering, 88(4): 507-512.
  • YALÇIN I., ÖZARSLAN C., AKBAŞ T. 2007. Physical properties of pea (Pisum sativum) seed. Journal of Food Engineering, 79: 731-735.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-8d4d7a53-a045-40a4-a051-6b2e6ace5c5f
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.