Breakaway system for agricultural machine boom

US11903377B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-11903377-B2
Application numberUS-202017028964-A
CountryUS
Kind codeB2
Filing dateSep 22, 2020
Priority dateSep 22, 2020
Publication dateFeb 20, 2024
Grant dateFeb 20, 2024

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A boom for an agricultural machine includes at least two boom sections and a breakaway system. The first boom section connects to a vehicle and supports fluid delivery components. The second boom section connects to the first boom section in an extended position aligned with the first boom section. The breakaway system is coupled between the first boom section and the second boom section. The breakaway system moves the second boom section with respect to the first boom an initial amount in response to an external force exceeding an initial resistance of the breakaway system, and moves the first boom beyond the initial amount in response to the external force exceeding a second resistance of the breakaway system, wherein the initial resistance is greater than the second resistance. The breakaway system is further configured to return the second boom to the extended position upon removal of the external force.

First claim

Opening claim text (preview).

What is claimed is: 1. A boom for an agricultural machine, comprising: a first boom section connectable to a vehicle, the first boom section configured to support fluid delivery components; a second boom section operably connected to the first boom section in an extended position aligned with the first boom section; a breakaway system coupled between the first boom section and the second boom section, the breakaway system configured to move the second boom section with respect to the first boom section an initial amount in response to an external force exceeding an initial resistance of the breakaway system, the breakaway system further configured to move the second boom section with respect to the first boom section beyond the initial amount in response to the external force exceeding a second resistance of the breakaway system, wherein the initial resistance is greater than the second resistance, and wherein the breakaway system is further configured to return the second boom section to the extended position upon removal of the external force; and wherein the breakaway system further comprises: a first braking system configured to apply the initial resistance; and a second braking system configured to apply the second resistance. 2. The boom of claim 1 , wherein the breakaway system further comprises at least a first arm that rotates in a first direction responsive to movement of the second beam section from the extended position; and wherein the first braking system is configured to provide the initial resistance to rotation of the first arm in the first direction, and the second braking system is configured to provide the second resistance to rotation of the first arm in the first direction. 3. The boom of claim 2 , wherein the first braking system includes an axle, and wherein the first arm is coupled to rotate on the axle. 4. The boom of claim 3 , wherein at least a portion of the axle is operably coupled to move axially responsive to rotation in the first direction, and wherein the first braking system is configured to provide the resistive force to axial movement of the portion of the axle. 5. The boom of claim 4 , wherein the second braking system includes a spring operably coupled to an end of the arm, the spring configured to provide the second resistance. 6. The boom of claim 5 , wherein the second braking system includes a hydraulic damper operably coupled to the spring. 7. A boom for an agricultural machine, comprising: a first boom section connectable to a vehicle, the first boom section configured to support fluid delivery components; a second boom section operably connected to the first boom section in an extended position aligned with the first boom section; a breakaway system coupled between the first boom section and the second boom section, the breakaway system configured to move the second boom section from the extended position in response to an external force against the second boom section, the breakaway system including at least a first arm that rotates in a first direction responsive to movement of the second beam section from the extended position, and an axle brake coupled to apply resistance to movement of the first arm in the first direction in order to resist movement of the second boom section from the extended position in response to the external force. 8. The boom of claim 7 , wherein the axle brake includes an axle, and wherein the first arm is coupled to rotate on the axle. 9. The boom of claim 8 , wherein the axle brake includes an axle shaft and an axle collar coupled to rotate together, the axle collar configured to move in a first axial direction with respect to the axle shaft responsive to rotation in the first direction, wherein the axle brake is configured to provide resistance to movement of the axle collar in the first axial direction with respect to the axle shaft. 10. The boom of claim 9 , wherein the axle shaft includes a plurality of splines, and the axle collar has a set of interior splines, and wherein the axle shaft extends into the axle collar such that the plurality of splines engage the set of interior splines. 11. The boom of claim 10 , wherein the axle brake further includes a first bearing plate having a variable depth race and a second opposing bearing plate, with at least a first ball in the variable depth race, the first bearing plate coupled to rotate with the axle shaft, the second bearing plate operably affixed to the second boom section. 12. The boom of claim 11 , further comprising a spring element operably coupled between a part of the axle shaft and the axle collar, the spring element configured to provide resistance to movement of the axle collar in the first axial direction with respect to the axle shaft. 13. The boom of claim 9 , further comprising a spring element operably coupled between a part of the axle shaft and the axle collar, the spring element configured to provide resistance to movement of the axle collar in the first axial direction with respect to the axle shaft. 14. The boom of claim 13 , wherein the spring element is disposed about a portion of the shaft. 15. The boom of claim 14 , wherein the spring element comprises a plurality of spring washers. 16. The boom section of claim 8 , wherein the breakaway system further comprises a spring mechanism operably coupled to an end of the first arm, the spring mechanism coupled to provide spring force to resist further movement of the first arm in the first direction. 17. A boom for an agricultural machine, comprising: a first boom section connectable to a vehicle, the first boom section configured to support fluid delivery components; a second boom section operably connected to the first boom section in an extended position aligned with the first boom section; a breakaway system coupled between the first boom section and the second boom section, the breakaway system configured to move the second boom section from the extended position in response to an external force against the second boom section, the breakaway system including at least a first arm that rotates in a first direction responsive to movement of the second beam section from the extended position, and an axle brake disposed about an axis of rotation of the first arm and configured to apply resistance to movement of the first arm in the first direction to resist movement of the second beam section from the extended position in response to the external force. 18. The boom of claim 17 , wherein the axle brake includes an axial shaft and an axial collar configured to rotate together about the axis of rotation, wherein the axle collar is configured to move in a first axial direction with respect to the axial shaft responsive to rotation in the first direction, wherein the axle brake is configured to provide resistance to movement of the axle collar in the first axial direction with respect to the axle shaft.

Assignees

Inventors

Classifications

  • A01M7/0078Primary

    including break-away devices · CPC title

  • A01M7/0075Primary

    including folding means · CPC title

  • Arrangements for preventing or controlling structural damage to spraying apparatus or its outlets, e.g. for breaking at desired places; Arrangements for handling or replacing damaged parts · CPC title

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Frequently asked questions

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What does patent US11903377B2 cover?
A boom for an agricultural machine includes at least two boom sections and a breakaway system. The first boom section connects to a vehicle and supports fluid delivery components. The second boom section connects to the first boom section in an extended position aligned with the first boom section. The breakaway system is coupled between the first boom section and the second boom section. The b…
Who is the assignee on this patent?
Exel Ind
What technology area does this patent fall under?
Primary CPC classification A01M7/0078. Mapped technology areas include Human Necessities.
When was this patent published?
Publication date Tue Feb 20 2024 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).