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NTIS 바로가기Journal of terramechanics, v.91, 2020년, pp.285 - 296
Kim, Wan-Soo (Department of Biosystems Machinery Engineering, Chungnam National University) , Kim, Yong-Joo (Department of Biosystems Machinery Engineering, Chungnam National University) , Baek, Seung-Yun (Department of Biosystems Machinery Engineering, Chungnam National University) , Baek, Seung-Min (Department of Biosystems Machinery Engineering, Chungnam National University) , Kim, Yeon-Soo (Department of Biosystems Machinery Engineering, Chungnam National University) , Choi, Yong (Upland Mechanization Team, National Institute of Agricultural Sciences, Rural Development Administration (RDA)) , Kim, Young-Keun (Upland Mechanization Team, National Institute of Agricultural Sciences, Rural Development Administration (RDA)) , Choi, Il-Su (Upland Mechanization Team, National Institute of Agricultural Sciences, Rural Development Administration (RDA))
Abstract The cone index (CI), as an indicator of the soil strength, is closely related to the traction performance of tractors. This study evaluates the traction performance of a tractor in terms of the CI during tillage. To analyze the traction performance, a field site was selected and divided in...
Soil Tillage Res. Arvidsson 111 219 2011 10.1016/j.still.2010.10.005 Comparing penetrometer and shear vane measurements with measured and predicted mouldboard plough draught in a range of Swedish soils
ASABE, 2018a. ASAE S313.3 FEB1999 (R2018) Soil cone penetrometer. ASABE Standards 2018. ASAE, St. Joseph, MI.
ASABE, 2018b. ASAE EP542 FEB1999 (R2018) Procedures for using and reporting data obtained with the soil cone penetrometer. ASABE Standards 2018. St. Joseph, MI.
J. Drive Control Baek 17 27 2020 Development of a simulation model for an 80 kW-class electric all-wheel-drive (AWD) tractor using agricultural workload
J. Agric. Sci. Battiato 5 2013 Influence of tyre inflation pressure and wheel load on the traction performance of a 65 kW MFWD tractor on a cohesive soil
Brixius, W.W., 1987. Traction prediction equations for bias ply tires. ASAE Paper 87-1622, American Society of Agricultural and Biological Engineers. St. Joseph, MI.
Brown, R.B., 2003. Soil Texture, Soil and Water Science Department, Florida Cooperative Extension Service, Institute of Food and Agriculture Sciences, University of Florida. https://doi.org/10.1590/S0325-75412011000200004.
Soil Tillage Res. Chung 129 9 2013 10.1016/j.still.2012.12.004 Relating mobile sensor soil strength to penetrometer cone index
J. Terramech. Damanauskas 60 63 2015 10.1016/j.jterra.2015.06.001 Differences in tractor performance parameters between single-wheel 4WD and dual-wheel 2WD driving systems
J. Terramech. Elwaleed 43 2 119 2006 10.1016/j.jterra.2004.10.002 Net traction ratio prediction for high-lug agricultural tyre
Trans. ASAE Esch 33 1109 1990 10.13031/2013.31446 Tractive performance comparisons between a rubber belt track and a four-wheel-drive tractor
Comput. Electron. Agric. Farhadi 162 793 2019 10.1016/j.compag.2019.05.031 Finite element modeling of the interaction of a treaded tire with clay-loam soil
Goering 1992 Engine and tractor power
Int. Res. J. Appl. Basic Sci. Inchebron 3 626 2012 Performance evaluation of a light tractor during plowing at different levels of depth and soil moisture content
J. Biosyst. Eng. Islam 44 218 2019 10.1007/s42853-019-00032-y Performance evaluation of trenchless subsurface drainage piping machine
Agric. Eng. Int. CIGR J. Jadhav 15 60 2013 Study of tractive efficiency as an effect of ballast and tire inflation pressure in sandy loam soil
J. Terramech. Keen 50 45 2013 10.1016/j.jterra.2012.08.001 A review of the tractive performance of wheeled tractors and soil management in lowland intensive rice production
J. Drive Control Kim 16 23 2019 Evaluation of PTO severeness for 78 kW-class tractor according to disk plow tillage and rotary tillage
Trans. Korean Soc. Mech. Eng. A Kim 43 911 2019 10.3795/KSME-A.2019.43.12.911 Analysis of power requirement of 78 kW class agricultural tractor according to the major field operation
Sensors Kim 20 912 2020 10.3390/s20030912 Development of a real-time tillage depth measurement system for agricultural tractors: Application to the effect analysis of tillage depth on draft force during plow tillage
Comput. Electron. Agric. Kumar 127 38 2016 10.1016/j.compag.2016.05.010 Embedded digital draft force and wheel slip indicator for tillage research
Proc. Environ. Sci. Lestariningsih 17 172 2013 10.1016/j.proenv.2013.02.026 Assessing soil compaction with two different methods of soil bulk density measurement in oil palm plantation soil
Biosyst. Eng. Molari 111 57 2012 10.1016/j.biosystemseng.2011.10.008 Performance of an agricultural tractor fitted with rubber tracks
OECD, 2020. OECD code2. Standard code for the official testing of agricultural and forestry tractor performance, OECD. Parish, France.
J. Biosyst. Eng. Okyere 44 47 2019 10.1007/s42853-019-00003-3 Analysis of draft force requirement of a compact disc harrow and model development for future predictions
Soil Tillage Res. Pentoś 165 113 2017 10.1016/j.still.2016.08.005 Applying an artificial neural network approach to the analysis of tractive properties in changing soil conditions
J. Saudi Soc. Agric. Sci. Ranjbarian 16 154 2017 Performance of tractor and tillage implements in clay soil
Biosyst. Eng. Regazzi 186 214 2019 10.1016/j.biosystemseng.2019.07.006 A theoretical study of the parameters affecting the power delivery efficiency of an agricultural tractor
Biosyst. Eng. Roul 104 476 2009 10.1016/j.biosystemseng.2009.09.004 Predicting the draught requirement of tillage implements in sandy clay loam soil using an artificial neural network
J. Terramech. Schreiber 44 75 2007 10.1016/j.jterra.2006.03.003 Comparison of different zero-slip definitions and a proposal to standardize tire traction performance
Biosyst. Eng. Serrano 98 286 2007 10.1016/j.biosystemseng.2007.08.002 Tractor energy requirements in disc harrow systems
Biosyst. Eng. Serrano 102 51 2009 10.1016/j.biosystemseng.2008.10.001 The effect of liquid ballast and tyre inflation pressure on tractor performance
J. Terramech. Singh 48 333 2011 10.1016/j.jterra.2011.06.007 Computerized instrumentation system for monitoring the tractor performance in the field
10.1016/j.still.2019.03.021 Upadhyay, G., Raheman, H., 2019. Specific draft estimation model for offset disc harrows. 191, 75-84. https://doi.org/10.1016/j.still.2019.03.021.
J. Terramech. Upadhyay 78 27 2018 10.1016/j.jterra.2018.04.002 Performance of combined offset disc harrow (front active and rear passive set configuration) in soil bin
Trans. ASAE Upadhyaya 27 6 1643 1984 10.13031/2013.33019 Energy requirements for chiseling in coastal plain soils
J. Terramech. Wismer 10 49 1973 10.1016/0022-4898(73)90014-1 Off-road traction prediction for wheeled vehicles
Zoz, F.M., Grisso, R.D., 2003. Traction and Tractor Performance. ASAE Disting. Lect. no. 27.
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