EP4059331B1

System and method for monitoring an operational status of a shear pin for a ground-engaging assembly of an agricultural implement

Abstract

This record has no abstract on file.

EP4059331B1, drawing sheet 1
Sheet 1 of 5

Term

15.5 yearsleft in the term

Expires 15 March 2042.

  1. Priority and filed
  2. Granted
  3. Today
  4. Expires

15 claims: 9 independent, 6 dependent

  1. 1
    A system (100) for monitoring the operational status of shear pins (90) for ground-engaging assemblies (60) of agricultural implements (10), the system comprising a ground-engaging assembly (60) including an attachment structure (62, 63, 64) pivotably coupling the ground-engaging assembly (60) to a frame (28) of an agricultural implement (10), a ground-engaging tool (50) pivotably coupled to the attachment structure (62, 63, 64) at a pivot joint (80), a shear pin (90) at least partially extending through the attachment structure (62, 63, 64) and the ground-engaging tool (50) to prevent pivoting of the ground-engaging tool (50) about the pivot joint (80), the system (100) being characterized by :an orientation sensor (102) configured to generate data indicative of an orientation of the attachment structure (62, 63, 64) relative to a reference orientation;and a computing system (110) communicatively coupled to the orientation sensor (102), the computing system (110) being configured to monitor the orientation of the attachment structure (62, 63, 64) and determine a change in an operational status of the shear pin (90) based on detected changes in the monitored orientation of the attachment structure (62, 63, 64).
  2. 3
    The system (100) as in any preceding claim, wherein the computing system (110) is configured to compare the monitored orientation of the attachment structure (62, 63, 64) to a predetermined orientation range set for the attachment structure (62, 63, 64), the computing system (110) being configured to determine that a change in the operational status of the shear pin (90) has occurred when it is detected that the monitored orientation of the attachment structure (62, 63, 64) falls outside the predetermined orientation range.
  3. 4
    The system (100) as in any preceding claim, wherein the computing system (110) is configured to compare a rate-of-change of the monitored orientation of the attachment structure (62, 63, 64) to a predetermined rate-of-change threshold set for the attachment structure (62, 63, 64), the computing system (110) being configured to determine that a change in the operational status of the shear pin (90) has occurred when it is detected that the rate-of-change of the monitored orientation exceeds the predetermined rate-of-change threshold.
  4. 5
    The system (100) as in any preceding claim, wherein the computing system (110) is further configured to automatically initiate a control action when it is determined that the operational status of the shear pin (90) has changed.
  5. 6
    The system (100) as in any preceding claim, wherein the agricultural implement (10) comprises a tillage implement (10) and the ground-engaging tool (50) comprises a shank (50) of the tillage implement (10).
  6. 7
    An agricultural implement (10) comprising a frame (28) and a plurality of shank assemblies (60) supported relative to the frame (28), each shank assembly including an attachment structure (62, 63, 64) pivotably coupling the shank assembly (60) to the frame (28), a shank (50) pivotably coupled to the attachment structure (62, 63, 64) at a pivot joint (80), a shear pin (90) at least partially extending through the attachment structure (62, 63, 64) and the shank (50) to prevent pivoting of the shank (50) about the pivot joint (80), and a biasing element (70) coupled between the frame (28) and the attachment structure (62, 63, 64), the biasing element (70) being configured to bias the shank (50) towards a ground-engaging position, the implement (10) being characterized by :a plurality of orientation sensors (102), each orientation sensor (102) being configured to generate data indicative of an orientation of the attachment structure (62, 63, 64) of a respective shank assembly (60) of the plurality of shank assemblies (60) relative to a reference orientation;and a computing system (110) communicatively coupled to the plurality of orientation sensors (102), the computing system (110) being configured to monitor the orientation of the attachment structure (62, 63, 64) of each of the plurality of shank assemblies (60) and determine a change in an operational status of the shear pin (90) of a given shank assembly (60) of the plurality of shank assemblies (60) based on detected changes in the monitored orientation of the attachment structure (62, 63, 64) of the given shank assembly (60).
  7. 10
    The agricultural implement (10) as in any of claims 7 through 9, wherein the computing system (110) is configured to compare a rate-of-change of the monitored orientation of the attachment structure (62, 63, 64) of each of the plurality of shank assemblies (60) to a predetermined rate-of-change threshold set for the attachment structure (62, 63, 64), the computing system (110) being configured to determine that a change in the operational status of the shear pin (90) of the given shank assembly (60) has occurred when it is detected that the rate-of-change of the monitored orientation exceeds the predetermined rate-of-change threshold.
  8. 12
    A method (200) for monitoring the operational status of a shear pin (90) for a ground-engaging assembly (60) of an agricultural implement (10), the ground-engaging assembly (60) including an attachment structure (62, 63, 64) pivotably coupling the ground-engaging assembly (60) to a frame (28) of the agricultural implement (10), a ground-engaging tool (50) pivotably coupled to the attachment structure (62, 63, 64) at a pivot joint (80), and a shear pin (90) at least partially extending through the attachment structure (62, 63, 64) and the ground-engaging tool (50) to prevent pivoting of the ground-engaging tool (50) about the pivot joint (80), the method (200) being characterized by :monitoring, with a computing system (110), an orientation of the attachment structure (62, 63, 64) of the ground-engaging assembly (60) relative to a reference orientation;determining, with the computing system, that a change in an operational status of the shear pin (60) of the ground-engaging assembly (60) has occurred based on detected changes in the monitored orientation of the attachment structure (62, 63, 64);and automatically initiating, with the computing system (110), a control action in response to determining that the change in the operational status of the shear pin (90) of the ground-engaging assembly (60) has occurred.
  9. 15
    The method (200) as in any of claims 12 through 14, wherein automatically initiating the control action comprises generating an operator notification associated with the operational status of the shear pin (90) or automatically reducing an operating speed of the agricultural implement (10).