IP Library › Granted Patent US 11,564,352
Granted Patent B2
US 11,564,352 · App. 16/497,844 · Granted Jan 31, 2023

Conditioner unit

Inventor: Rasmus Elmelund Nielsen (Gudbjerg, DK)
Assignee: Kverneland Group Kerteminde AS
A01D43/102A01D34/667A01D82/00A01D34/66A01D2101/00
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Quick Facts
Patent No.
US 11,564,352
App. No.
16/497,844
Granted
Jan 31, 2023
Kind
B2
Abstract

A conditioner unit ( 6 ) for conditioning crop material comprises a rotor ( 17 ) having a shaft ( 18 ) that carries a plurality of conditioning elements, a drive mechanism for driving rotation of the rotor ( 17 ) about an axis, and a deflector element having a working surface ( 26 ) that surrounds at least part of the circumference of the rotor ( 17 ) to define a conditioning passage through which crop material is transported by rotation of the rotor ( 17 ). An adjusting mechanism ( 30 ) is provided for adjusting the position of the deflector element relative to the rotor ( 17 ), the adjusting mechanism ( 30 ) including an actuator ( 50 ), a sensor for sensing an operational condition of the conditioning unit ( 6 ) and a control system ( 56 ) that receives a sensor signal from the sensor and controls actuation of the actuator ( 50 ) in response to said sensor signal to provide a desired level of conditioning during operation of the conditioner unit ( 6 ).

Claims (20)

1. A conditioner unit for conditioning crop material, the conditioner unit comprising a rotor having a shaft that carries a plurality of conditioning elements, a drive mechanism for driving rotation of the rotor about an axis, a deflector element having a working surface that surrounds at least part of the circumference of the rotor to define a conditioning passage through which crop material is transported by rotation of the rotor, and an adjusting mechanism for adjusting the position of the deflector element relative to the rotor, wherein the adjusting mechanism includes an actuator for adjusting the position of the deflector element, a sensor for sensing an operational condition of the conditioning unit and a control system that is configured to receive a sensor signal from the sensor and controls actuation of the actuator in response to said sensor signal to adjust the position of the deflector element relative to the rotor so as to provide a desired level of conditioning during operation of the conditioner unit, wherein the control system is programmed to receive geographical position data and is configured to use mapping information from a database to adjust the position of the deflector element during operation of the conditioner unit according to known variations in growing conditions within a particular geographical area, wherein the control system is configured for automatic control of said actuator and wherein the control system is configured to adjust the position of the deflector element so as to maintain the desired level of conditioning at a substantially uniform level during operation of the conditioner unit.

2. The conditioner unit according to claim 1 , wherein the desired level of conditioning is adjustable.

3. The conditioner unit according to claim 1 , wherein said sensor is configured to sense at least one operational condition selected from a range comprising: a force acting on the deflector element, a flow rate of crop material through the conditioning channel, a travelling speed of the conditioner unit, a power consumption value, or a rotational drive value of the drive mechanism.

4. The conditioner unit according to claim 1 , wherein the working surface has front and rear ends that define respectively input and output ends of the conditioning passage, the adjusting mechanism being configured to adjust the position of at least one of the ends of the working surface.

5. The conditioner unit according to claim 4 , wherein the adjusting mechanism includes a first adjuster element for adjusting the position of the front end of the working surface, and a second adjuster element for adjusting the position of the rear end of the working surface.

6. The conditioner unit according to claim 5 , wherein the first and second adjuster elements are independently operable.

7. The conditioner unit according to claim 5 , wherein at least one of the adjuster elements comprises said actuator.

8. The conditioner unit according to claim 5 , wherein at least one of the adjuster elements comprises a manual adjuster element.

9. The conditioner unit according to claim 8 , wherein said manual adjuster element is configured for selectively positioning an end of the working surface in first or second stop positions or at least one intermediate position.

10. The conditioner unit according to claim 1 , wherein the conditioner elements comprise flail elements pivotally attached to the shaft of the rotor.

11. A mower-conditioner device comprising the conditioner unit according to claim 1 , and a mower unit that is configured to cut a crop material and feed the cut crop material to the conditioner unit.

12. The mower-conditioner unit according to claim 11 , wherein the mower unit comprises a plurality of rotary cutter elements.

13. A conditioner unit for conditioning crop material, the conditioner unit comprising a rotor having a shaft that carries a plurality of conditioning elements, a drive mechanism for driving rotation of the rotor about an axis, a deflector element having a working surface that surrounds at least part of the circumference of the rotor to define a conditioning passage through which crop material is transported by rotation of the rotor, and an adjusting mechanism for adjusting the position of the deflector element relative to the rotor, wherein the adjusting mechanism includes an actuator for adjusting the position of the deflector element, a sensor for sensing an operational condition of the conditioning unit and a control system that is configured to receive a sensor signal from the sensor and controls actuation of the actuator in response to said sensor signal to adjust the position of the deflector element relative to the rotor so as to provide a desired level of conditioning during operation of the conditioner unit, wherein the control system is programmed to receive geographical position data and is configured to use mapping information from a database to adjust the position of the deflector element during operation of the conditioner unit according to known variations in growing conditions within a particular geographical area, and wherein the control system is configured to adjust the position of the deflector element so as to maintain the desired level of conditioning at a substantially uniform level during operation of the conditioner unit, wherein the working surface has front and rear ends that define respectively input and output ends of the conditioning passage, wherein the adjusting mechanism includes a first adjuster element for adjusting the position of the front end of the working surface, and a second adjuster element for adjusting the position of the rear end of the working surface, both the front and rear adjusting arms of the adjusting mechanism may be adjusted automatically so as to control both the feed rate of the crop material through the conditioner unit and the degree of conditioning.

14. The conditioner unit according to claim 13 , wherein said sensor is configured to sense at least one operational condition selected from a range comprising: a force acting on the deflector element, a flow rate of crop material through the conditioning channel, a travelling speed of the conditioner unit, a power consumption value, or rotational drive value of the drive mechanism.

15. The conditioner unit according to claim 13 wherein the first and second adjuster elements are independently operable.

16. The conditioner unit according to claim 13 wherein the adjuster element is configured for adjusting the distance between the front end and/or the rear end of the working surface and the axis of the rotor or in a direction around the circumference of the rotor, or both.

17. A conditioner unit for conditioning crop material, the conditioner unit comprising a rotor having a shaft that carries a plurality of conditioning elements, a drive mechanism for driving rotation of the rotor about an axis, a deflector element having a working surface that surrounds at least part of the circumference of the rotor to define a conditioning passage through which crop material is transported by rotation of the rotor, and an adjusting mechanism for adjusting the position of the deflector element relative to the rotor, wherein the adjuster element is configured for adjusting the distance between the front end and/or the rear end of the working surface and the axis of the rotor or in a direction around the circumference of the rotor, or both; wherein the adjusting mechanism includes an actuator for adjusting the position of the deflector element, a sensor for sensing an operational condition of the conditioning unit and a control system that is configured to receive a sensor signal from the sensor and controls actuation of the actuator in response to said sensor signal to adjust the position of the deflector element relative to the rotor so as to provide a desired level of conditioning during operation of the conditioner unit, wherein the control system is programmed to receive geographical position data and is configured to use mapping information from a database to adjust the position of the deflector element during operation of the conditioner unit according to known variations in growing conditions within a particular geographical area, and wherein the control system is configured to adjust the position of the deflector element so as to maintain the desired level of conditioning at a substantially uniform level during operation of the conditioner unit.

18. The conditioner unit according to claim 17 , wherein the working surface has front and rear ends that define respectively input and output ends of the conditioning passage, wherein the adjusting mechanism includes a first adjuster element for adjusting the position of the front end of the working surface, and a second adjuster element for adjusting the position of the rear end of the working surface, both the front and rear adjusting arms of the adjusting mechanism may be adjusted automatically so as to control both the feed rate of the crop material through the conditioner and the degree of conditioning.

19. The conditioner unit according to claim 18 , wherein the first and second adjuster elements are independently operable.

20. The conditioner unit according to claim 17 , wherein said sensor is configured to sense at least one operational condition selected from a range comprising: a force acting on the deflector element, a flow rate of crop material through the conditioning channel, a travelling speed of the conditioner unit, a power consumption value, or a rotational drive value of the drive mechanism.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 26, 2019
From: NIELSEN, RASMUS ELMELUND
To: KVERNELAND GROUP KERTEMINDE AS
Reel/Frame 050498/0437 →
Priority Claims (1)
GB 1705251 · Mar 31, 2017 · national
Continuity (1)
Related Publication 20200029503A1 · Jan 30, 2020