Abstract
Turning time occupies a significant part of the operations carried out by implement-and-tractor aggregates, especially in fields with short runs. Incorrectly executed turns increase the width of the turning strips, significantly increasing the idle path of the implement-and-tractor aggregate, with negative effect on its efficiency. The objective of this paper was to theoretically analyse the turning agility of an asymmetric implement-and-tractor aggregate, taking into account its forward speed and design parameters. Considering a trailed asymmetric swath reaper and tractor aggregate, the obtained equations allowed a numerical simulation in order to evaluate the headland turning agility of this implement-and-tractor aggregate. The minimal radii of the trailed asymmetric swath reaper and tractor aggregate are, respectively, 8.33 m for right-side turn and 4.90 m for left-side turn. Furthermore, the optimal angle between the longitudinal axis of the aggregating tractor and the hitch bar of the trailed asymmetric implement exists only in the case of left-side U-turns and its value is 1.12 rad (64◦). It is not possible to cover right-side U-turns or both right-and left-side pear-shaped loop-turn in the optimal mode.
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Bulgakov, V., Pascuzzi, S., Beloev, H., & Ivanovs, S. (2019). Theoretical investigations of the headland turning agility of a trailed asymmetric implement-and-tractor aggregate. Agriculture (Switzerland), 9(10). https://doi.org/10.3390/agriculture9100224
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