IP Library Granted Patent US 10,375,874
Granted Patent B2
US 10,375,874 · App. 15/673,745 · Granted Aug 13, 2019

Dual rate sweep load on field cultivator shank assembly

Inventor: Dean A. Knobloch (Tucson, AZ)
Assignee: CNH Industrial America LLC
A01B61/046A01B3/24A01B49/027
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Quick Facts
Patent No.
US 10,375,874
App. No.
15/673,745
Granted
Aug 13, 2019
Kind
B2
Abstract

An agricultural implement including a frame configured to be towed behind a vehicle and a plurality of shank assemblies connected to the frame and configured for engaging a soil. Each shank assembly includes a shank mount configured to mount to the frame, a coupling arm pivotally connected to the shank mount and extending rearwardly therefrom, and a shank connected to the coupling arm at an end and extending downwardly therefrom to a tool-supporting end. Each shank assembly also includes a ground-engaging tool connected to the tool-supporting end of the shank and a variable rate spring positioned in between the shank mount and the coupling arm and configured for providing a variable ground-engaging tool load.

Claims (36)

1. An agricultural implement, comprising:

a frame configured to be towed behind a vehicle;

a plurality of shank assemblies connected to the frame and configured for engaging a soil, each said shank assembly including:

a shank mount configured to mount to the frame;

a coupling arm pivotally connected to the shank mount and extending rearwardly therefrom, the coupling arm including a shank channel guard pivotally connected to the shank mount and extending substantially horizontally and rearwardly therefrom and a spring channel fixedly attached to the shank channel guard;

a shank connected to the coupling arm at an end and extending downwardly therefrom to a tool-supporting end;

a ground-engaging tool connected to the tool-supporting end of the shank; and

a variable rate spring positioned in between the shank mount and the coupling arm and configured for providing a variable ground-engaging tool load, wherein the variable rate spring includes coils having a wider pitch and coils having a closer pitch, and wherein the coils having a wider pitch are positioned over a pivot casting of a spring retaining assembly;

wherein the spring channel has a first and second side wall and a middle portion interconnecting the first and second side walls, the middle portion having a protruding spring keeper section configured for contacting an end of the variable rate spring, the spring keeper section having a through-hole;

wherein the spring channel has a first and second side wall and a middle portion interconnecting the first and second side walls, the middle portion having a protruding spring keeper section configured for contacting an end of the variable rate spring, the spring keeper section having a through-hole; and

the spring retaining assembly including the pivot casting pivotally connected to the shank mount and a retaining bolt extending through the through-hole of the spring keeper section of the spring channel and through a center axis of the variable rate spring, the retaining bolt being associated with the pivot casting.

2. The agricultural implement of claim 1 , wherein the variable ground-engaging tool load increases in a hard soil.

3. The agricultural implement of claim 1 , wherein the variable rate spring is in the form of a dual rate spring that has a first spring rate and a second spring rate.

4. The agricultural implement of claim 3 , wherein the dual rate spring is configured to provide a first ground-engaging tool load associated with the first spring rate and a second ground-engaging tool load associated with the second spring rate.

5. The agricultural implement of claim 3 , wherein the dual rate spring operates initially at the first spring rate and subsequently at the second spring rate.

6. The agricultural implement of claim 3 , wherein the second spring rate is greater than the first spring rate.

7. The agricultural implement of claim 6 , wherein the first spring rate is approximately 220 lbs./in and the second spring rate is approximately 260 lbs./in.

8. The agricultural implement of claim 1 , wherein the first and second side wall are oriented at right angles relative to the middle portion of the spring channel, and are parallel relative to each other, and wherein the protruding keeper section of the middle portion of the spring channel is configured to protrude outward away from the variable rate spring.

9. The agricultural implement of claim 1 , wherein the variable rate spring is only one spring.

10. The shank assembly of claim 1 , wherein the variable rate spring is only one spring.

11. A shank assembly configured for engaging a soil, including:

a shank mount;

a coupling arm pivotally connected to the shank mount and extending rearwardly therefrom, the coupling arm including a shank channel guard pivotally connected to the shank mount and extending substantially horizontally and rearwardly therefrom and a spring channel fixedly attached to the shank channel guard;

a shank connected to the coupling arm at an end and extending downwardly therefrom to a tool-supporting end;

a ground-engaging tool connected to the tool-supporting end of the shank; and

a variable rate spring positioned in between the shank mount and the coupling arm and configured for providing a variable ground-engaging tool load, wherein the variable rate spring includes coils having a wider pitch and coils having a closer pitch, and wherein the coils having a wider pitch are positioned over a pivot casting of a spring retaining assembly;

wherein the spring channel has a first and second side wall and a middle portion interconnecting the first and second side walls, the middle portion having a protruding spring keeper section configured for contacting an end of the variable rate spring, the spring keeper section having a through-hole;

wherein the spring channel has a first and second side wall and a middle portion interconnecting the first and second side walls, the middle portion having a protruding spring keeper section configured for contacting an end of the variable rate spring, the spring keeper section having a through-hole; and

the spring retaining assembly including the pivot casting pivotally connected to the shank mount and a retaining bolt extending through the through-hole of the spring keeper section of the spring channel and through a center axis of the variable rate spring, the retaining bolt being associated with the pivot casting.

12. The shank assembly of claim 11 , wherein the variable ground-engaging tool load increases in a hard soil.

13. The shank assembly of claim 11 , wherein the variable rate spring is in the form of a dual rate spring that has a first spring rate and a second spring rate.

14. The shank assembly of claim 13 , wherein the dual rate spring is configured to provide a first ground-engaging tool load associated with the first spring rate and a second ground-engaging tool load associated with the second spring rate.

15. The shank assembly of claim 13 , wherein the dual rate spring operates initially at the first spring rate and subsequently at the second spring rate.

16. The shank assembly of claim 13 , wherein the second spring rate is greater than the first spring rate.

17. The shank assembly of claim 16 , wherein the first spring rate is approximately 220 lbs./in and the second spring rate is approximately 260 lbs./in.

18. The shank assembly of claim 11 , wherein the first and second side wall are oriented at right angles relative to the middle portion of the spring channel, and are parallel relative to each other, and wherein the protruding, keeper section of the middle portion of the spring channel is configured to protrude outward away from the variable rate spring.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 23, 2019
From: CNH INDUSTRIAL AMERICA LLC
To: BLUE LEAF I.P., INC.
Reel/Frame 050809/0833 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 10, 2017
From: KNOBLOCH, DEAN A.
To: CNH INDUSTRIAL AMERICA LLC
Reel/Frame 043259/0960 →
Continuity (1)
Related Publication 20190045700A1 · Feb 14, 2019