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    베일 압력에 따른 78 kW급 농업용 트랙터의 PTO 부하에 관한 연구 = A study on PTO load for a 78 kW class agricultural tractor according to bale pressure

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    https://www.riss.kr/link?id=A107472673

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    This is a basic study for the performance evaluation and optimal design of the 78 kW class tractor PTO (Power-Take-Off) during baler operation. A load measurement system was developed using a PTO torque meter and DAQ (Data Acquisition). The PTO torque according to the bale pressure was collected using a load measurement system, and the equivalent torque was analyzed. A bale pressure measurement system was developed using a proximity sensor and load cell. The bale pressure level is configured to be set by adjusting the distance of the proximity sensor. The bale pressure was measured by setting the distance of the proximity sensor to 5 and 10 mm, and bale pressures were found to be about 220.4 and 527.3 kgf, respectively. As a result of measuring the PTO load under the same bale pressure condition and calculating the equivalent torque for 5 and 10 mm were found to be 357.15 and 538.48 Nm, respectively. The PTO equivalent torque increased by about 33% as the bale pressure increased. The equivalent PTO torque for 5 and 10 mm were found 45 and 17% lower than the tractor maximum PTO torque, which was 654 Nm. It was observed that the PTO equivalent torque was lower than the tractor PTO maximum torque during baler operation. Therefore, it is necessary to perform PTO performance evaluation and optimal design in consideration of the equivalent torque generated according to the bale pressure during actual baler operation.
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    This is a basic study for the performance evaluation and optimal design of the 78 kW class tractor PTO (Power-Take-Off) during baler operation. A load measurement system was developed using a PTO torque meter and DAQ (Data Acquisition). The PTO torque...

    This is a basic study for the performance evaluation and optimal design of the 78 kW class tractor PTO (Power-Take-Off) during baler operation. A load measurement system was developed using a PTO torque meter and DAQ (Data Acquisition). The PTO torque according to the bale pressure was collected using a load measurement system, and the equivalent torque was analyzed. A bale pressure measurement system was developed using a proximity sensor and load cell. The bale pressure level is configured to be set by adjusting the distance of the proximity sensor. The bale pressure was measured by setting the distance of the proximity sensor to 5 and 10 mm, and bale pressures were found to be about 220.4 and 527.3 kgf, respectively. As a result of measuring the PTO load under the same bale pressure condition and calculating the equivalent torque for 5 and 10 mm were found to be 357.15 and 538.48 Nm, respectively. The PTO equivalent torque increased by about 33% as the bale pressure increased. The equivalent PTO torque for 5 and 10 mm were found 45 and 17% lower than the tractor maximum PTO torque, which was 654 Nm. It was observed that the PTO equivalent torque was lower than the tractor PTO maximum torque during baler operation. Therefore, it is necessary to perform PTO performance evaluation and optimal design in consideration of the equivalent torque generated according to the bale pressure during actual baler operation.

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