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Issue Info: 
  • Year: 

    2024
  • Volume: 

    55
  • Issue: 

    2
  • Pages: 

    1-12
Measures: 
  • Citations: 

    0
  • Views: 

    41
  • Downloads: 

    12
Abstract: 

In order to manage cost reduction in saline land under wheat cultivation, a research was carried out as a split plot arranged in a randomized complete block design with three replications. The main factor included three soil moisture percentages during the initial plowing (10, 15, and 20%) and secondary factor was four methods of land preparation and sowings (non application of chisel piler + sowing with flat planter, non application of chisel piler + sowing with furrow planter, application of chisel piler + sowing with flat planter and application of chisel piler + sowing with furrow planter). In this research, before applying the secondary factor, a 24-blade disc was used for the initial plowing of the land. The results showed that the highest weight and volume of clods were found when non application of chisel piler with 20% soil moisture and the lowest one when chisel piler was applied with 10% soil moisture. The highest seed germination was with application of chisel piler + furrow planter and humidity of 20% and the lowest value was with non application of chisel piler + flat planter and soil moisture of 10%. The highest grain yield was obtained with application of chisel piler + furrow planter by 4593 kg/ha and the lowest value was obtained by 2797 kg/ha under non application of chisel piler and flat planter. In general, the results showed that the use of chisel piler and furrow planter with 20% soil moisture had a positive effect on improving germination, physiological and yield characteristics of wheat in saline lands, and it can be taken into consideration by farmers.

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Issue Info: 
  • Year: 

    2023
  • Volume: 

    37
  • Issue: 

    3
  • Pages: 

    229-242
Measures: 
  • Citations: 

    0
  • Views: 

    46
  • Downloads: 

    4
Abstract: 

This experiment was conducted to evaluate the effect of soil moisture and tillage and sowing machinery on yield and yield components of wheat in the saline soils of Mahshahr, Iran. The experiment was carried out as a split-plot according to a randomized complete block design with three replications. Independent variables included soil moisture during tillage at three levels of 10%, 15%, and 20% as the main factor. Sub-factor included the type of tillage and sowing machinery at four levels including 1) without the use of chisel-piler and sowing with flat seeder machine, 2) without the use of chisel-piler and sowing with furrow seeder machine, 3) one time use of chisel-piler to a depth of 20 cm and sowing with flat seeder machine, and 4) one time use of chisel-piler to a depth of 20 cm and sowing with furrow seeder machine. In order to prepare the land, irrigation was done before tillage according to the region's customs to reduce the tensile strength of the soil against tillage machines. After the soil moisture was suitable according to the main factors, the tillage was done with a 24-bladed disk machine once to a depth of 15 cm. The maximum clod weight was obtained in the condition of not using a chisel-piler and soil moisture of 20%, and the lowest was obtained in using a chisel-piler and soil moisture of 10%. The maximum number of tiller/plant, number of spikes/m2, number of spikelet/spike, number of grain/spike, number of grain/spikelet, biological yield, and grain yield was under using chisel-piler and sowing with furrow seeder machine with 20% soil moisture, and the lowest in the treatment with no chisel-piler and sowing with flat seeder machine. In general, the results showed that the use of chisel-piler and sowing with furrow seeder machine under 20% soil moisture had the best results in terms of grain formation and yield in saline soils, which can be suggested to reduce the effects of salinity.

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Issue Info: 
  • Year: 

    2009
  • Volume: 

    40
  • Issue: 

    2
  • Pages: 

    139-145
Measures: 
  • Citations: 

    0
  • Views: 

    1229
  • Downloads: 

    0
Abstract: 

Drafts of major primary tillage implements were measured in a clay loam soil using a tension loadcell. Implements consisted of a moldboard, a disk and a chisel plow each equipped with one tillage unit. A photoelectric speed sensor was used for actual forward speed measurements. During the study, the effects of forward speed and tillage depth on draft requirements were investigated. A general regression equation was developed to predict the specific draft of these implements as based on the Standard ASAE, D497.5. Results of statistical analysis indicated a significant increase in draft for all the three implements with an increase in depth of operation. The values of specific draft for the three tested tillage implements were significantly affected by forward speed. Coefficients of specific draft equations were determined through regression analysis. Specific draft equation coefficients (A, B and C) were obtained as: 256.26, 2.28 and12.11 from moldboard plow; 152.28, 3.79 and 9.66 for disk plow; and 26.9, 12.18 and 0.13 for chisel plow respectively. High values of R-square (R2) for specific draft equations in the case of each implement showed that the models are able to present a good prediction of the implements' required draft.

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Issue Info: 
  • Year: 

    2017
  • Volume: 

    47
  • Issue: 

    4
  • Pages: 

    651-658
Measures: 
  • Citations: 

    0
  • Views: 

    990
  • Downloads: 

    0
Abstract: 

Performance optimization of a chisel tine was investigated by use of a chisel plow equipped with a rake adjustable in its rake angle. The affecting parameters consisted of soil moistures, namely: 0.5, 0.7 and 0.9 of plastic limit (PL), three rake angles of 30, 40 and 50 degrees and speeds of: 3, 5 and 7 km h-1. The assessed parameters included draft, soil disturbance area, soil upheaving area, clod Mean Weight Diameter (MWD), specific draft and soil Cone Index (CI). The statistical design applied was a factorial split block one. To optimize the chisel plow in terms of six evaluated factors, three regression equations based on multiple regression for three factors of: soil moisture, tine rake angle and travel speed were obtained the for six measured traits. Regression analysis showed that the most appropriate moisture for tillage is 0.71 (PL), the most acceptable rake angle is 34 degrees and the most convenient speed 5.5 km h-1.

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Issue Info: 
  • Year: 

    2018
  • Volume: 

    49
  • Issue: 

    1
  • Pages: 

    73-82
Measures: 
  • Citations: 

    0
  • Views: 

    382
  • Downloads: 

    0
Abstract: 

By installation of rake angle changeable mechanism on single chisel plow frame, prediction for optimizing performance of chisel blade had available. The dependent parameters which considered as mainly treatment were three levels for soil moisture content (0. 5 PL, 0. 7 PL, 0. 9 PL), three levels of rake angle (20° , 30° , 40° ) and three levels for forward speed (3, 5, 7 km. h-1) in vs. eight independent parameters include of draft, tractor fuel consumption, driver wheel slip, soil mean weight diameter, cone index, soil disturbance area, soil upheaving area and specific draft had related together in linear multiple regression in three independent equations. The data mining was performed by split split plot in completely randomized. Hence, the best moisture, tine rake angle and forward speed was predicted as 0. 8 PL, 36 degree and 5 km. h-1, respectively. Therefore, the minimum magnitude of slip, soil cone index, minimum draft force and fuel consumption were obtained.

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Issue Info: 
  • Year: 

    2023
  • Volume: 

    14
  • Issue: 

    2
  • Pages: 

    577-600
Measures: 
  • Citations: 

    0
  • Views: 

    25
  • Downloads: 

    8
Abstract: 

This work aims to investigate the effect of water saturation on cutting forces and chipping efficiency by performing a series of small-scale linear cutting tests with a chisel pick on twelve low- and medium-strength rock samples. The peak and mean cutting force acting on the chisel pick are measured and recorded under dry and saturated cutting conditions by the strain sensors that are embedded in the dynamometer. Also the amplitude of cutting force fluctuations in dry and saturated cutting conditions is compared by the standard deviation measurement of cutting force data, and its relationship with the size of cutting fragments is investigated. The results obtained show that the peak cutting force is reduced in saturated conditions compared to dry conditions. The mean cutting force in the synthetic sample cutting test is unchanged or in some cases increase, while in the natural samples it decreases. The relative increase in the mean cutting force in synthetic rock specimens is due to the paste state of fine materials produced from saturated cutting and chisel pick clogging. A strong correlation is found between the standard deviation of cutting force data and the average size of rock debris, indicating that the standard deviation of cutting force data is a useful measure for evaluating the chipping efficiency. The present study's findings reveal that to have an efficient excavation system in field operations, it is necessary to consider the presence of water and saturated conditions in designing the cutting machine's operating parameters and predicting the performance of mechanical excavators.

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Issue Info: 
  • Year: 

    2022
  • Volume: 

    12
  • Issue: 

    1
  • Pages: 

    1-19
Measures: 
  • Citations: 

    0
  • Views: 

    64
  • Downloads: 

    14
Abstract: 

All over the world, farmers choose different implements for tillage, which depend on crop type, soil type, the amount of plant residue from the previous crop, etc. Tillage implement selection is also affected by the availability of implements, power consumption, labor costs, and fund. In this research, the draft force, soil disturbance area, soil cone index, and fuel consumption were considered. The effects of rake angle, forward speed, and soil moisture content on the above-mentioned parameters were investigated. In this research, a comparison between the performance of a Fiber Reinforced Polymer (FRP) composite blade and a conventional steel blade was carried out. Tests were based on the split-split plot in a completely randomized design. The factors of soil moisture content, rake angle, and forward speed were included in three levels. Three levels for the soil moisture content (9.3, 13, 16.7 %), rake angle (20°, 30°, 40°), and forward speed (3, 5, 7 km.h-1), were considered. The FRP composite blade (on average in the desired range for variables) has reduced the draft force, fuel consumption, and soil cone index, 14.97%, 16.63%, and 35.08%, respectively, than the steel blade. Also, the soil disturbance area created by the FRP composite blade was 4.93% higher than the steel blade. Based on the results of this study, it is clear that the FRP composite blade has better performance rather than the conventional steel blade for the aforementioned test variables. The FRP composite is inexpensive than the steel, this leads to remarkable save money in the production of the FRP composite blade used in the chisel and combined tillage tools that is economical for the farmer and manufacturer.

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Author(s): 

AHMADI IMAN

Issue Info: 
  • Year: 

    2017
  • Volume: 

    47
  • Issue: 

    4
  • Pages: 

    625-632
Measures: 
  • Citations: 

    0
  • Views: 

    868
  • Downloads: 

    0
Abstract: 

chisel plow is one of the tillage implements utilized to carry out conservation tillage practices; therefore, paying more attention to the force required for its. Operation is of much concern. To achieve this, a theoretical model was developed to estimate draft, specific draft, and drawbar power as required by a chisel plow. The results obtained from the developed model were compared with the reports of other studies and with the results of field experiments to validate the operation of the developed model. According to the results, the required draft force of a twelve-shank chisel plow, working at 30 cm depth in sandy, loamy, and clay soils were 27, 43 and 55 kN respectively and the required specific draft of this implement were 3.3, 5.1 and 6.5 N/cm2 respectively. The results were in agreement with the results attained from other studies, well with the results of ASABE standard (2011), therefore; it was concluded that the developed model is of the capability to estimate draft force of a chisel plow to an acceptable degree.

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Issue Info: 
  • Year: 

    2015
  • Volume: 

    46
  • Issue: 

    2
  • Pages: 

    201-208
Measures: 
  • Citations: 

    0
  • Views: 

    1131
  • Downloads: 

    0
Abstract: 

The purpose followed in the present research was to study and predict fuel consumption rate of tractor due to different aspect ratios for a chisel plow blade and to determine a general relationship between aspect ratio (D/W) and fuel consumption rate. An ITM-399 (81 kW) tractor and a mounted-type chisel plow of 9 shanks were employed. Two 5 and 10 cm width chisel blades were tested. The experiments were conducted in a clay-loam soil when at 9% of d.b moisture content, three levels of tillage depths (10, 15, and 20 cm), and three levels of travel speed (3, 4, and 5 km. h-1) in three replications. Results from F-test at 95% showed that three was no significant difference between the measured vs predicted values as compared with 1:1 line plot. Normalized Root Mean Square Error (NRMSE) and Mean Bias Error (MBE) indices were made use of to verify the accuracy of the equation. The results validated the precision of the attained equation.

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Issue Info: 
  • Year: 

    2023
  • Volume: 

    12
  • Issue: 

    4
  • Pages: 

    742-766
Measures: 
  • Citations: 

    0
  • Views: 

    88
  • Downloads: 

    0
Abstract: 

Introduction: This study aims to determine the amount of hand-arm vibration transmitted from heavy electric destruction tools and the effect of using chisel with different lengths and shapes when demolishing concrete surfaces. Material and Methods: To evaluate the magnitude of hand-arm vibration on the left and right handles of two powerful electric demolition hammers commonly applied in Iranian construction work and urban services, 323 measurements were made (RONIX and NEC). The demolition procedure was carried out by two experienced users on 49 concrete slabs of the same grade (20 C) with thicknesses of 10 and 15 cm while utilizing standard tools, such as hammers with two different chisel head shapes (flat and point) and lengths (40 and 60 cm). Utilizing two SVANTEK vibration meters concurrently on each hammer handle, measurement and evaluation were according to the ISO 5349: 1, 2 procedures. Results: The mean effective (frequency weighted root mean square) acceleration (awrms) for the Vector Sum Values (VSV) in the hammer handles were 15. 71 m/s. The primary vibrational axis transmitted to the handle of tool was the vertical axis, at 13. 60 m/s 2. When employing flat and point chisel, the mean awrms were 16. 59 m/s 2, respectively. The difference between the results of 60 and 40 chisel was a little more than 2m/s 2 and 14. 82 m/s 2. The dominant and harmonic frequencies of the tools were generally in the range of 25 Hz to 80 Hz and 200 Hz to 400 Hz 2 Conclusion: The mean results generally indicated that point chisel with shorter lengths (40 cm) accelerates at a lower rate than flat chisel with longer lengths (60 cm). In the frequency range below 40 Hz, the RONIX hammer produced a larger acceleration than the NEC hammer indicating that the NEC hammer had a higher safety competitive advantage compared to the another hammer.

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