Tool system
US-10143122-B2 · Dec 4, 2018 · US
US10412875B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10412875-B2 |
| Application number | US-201715586372-A |
| Country | US |
| Kind code | B2 |
| Filing date | May 4, 2017 |
| Priority date | May 4, 2017 |
| Publication date | Sep 17, 2019 |
| Grant date | Sep 17, 2019 |
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In one aspect, a shank assembly for an agricultural implement may include a shank and a biasing element configured to exert a biasing force on the shank. The shank assembly may also include a reversible mounting plate defining a mounting aperture offset from a centerline of the reversible mounting plate such that a position of a second mounting location of the biasing element relative to a first mounting location of the biasing element differs depending on whether the reversible mounting plate is provided in a first orientation relative to the biasing element or a second orientation relative to the biasing element. The biasing element may exert a first biasing force on the shank when the reversible member is oriented in the first orientation and a second, different biasing force on the shank when the reversible member is oriented in the second orientation.
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What is claimed is: 1. A shank assembly for an agricultural implement, the shank assembly comprising: a shank; a biasing element configured to exert a biasing force on the shank, the biasing element being compressed between a first mounting location for the biasing element and a second mounting location for the biasing element; a reversible mounting plate configured to be positioned relative to the biasing element in both a first orientation and a second orientation, the second orientation for the reversible mounting plate being offset from the first orientation by one hundred and eighty degrees about a centerline of the reversible mounting plate, the reversible mounting plate defining a mounting aperture positioned at the second mounting location for the biasing element, the mounting aperture being offset from the centerline of the reversible mounting plate such that a position of the second mounting location relative to the first mounting location differs depending on whether the reversible mounting plate is provided in the first orientation or the second orientation relative to the biasing element; wherein the biasing element exerts a first biasing force on the shank when the reversible member is oriented in the first orientation and a second biasing force on the shank when the reversible member is oriented in the second orientation, the first biasing force being different than the second biasing force. 2. The shank assembly of claim 1 , wherein the biasing element defines a first compressed length between the first and second mounting locations when the reversible member is oriented in the first orientation and a second compressed length between the first and second mounting locations when the reversible member is oriented in the second orientation, the first compressed length being different than the second compressed length. 3. The shank assembly of claim 1 , wherein the biasing element comprises a first spring. 4. The shank assembly of claim 3 , further comprising a second spring positioned concentrically within the first spring. 5. The shank assembly of claim 4 , wherein the first spring has a spring constant that differs from a spring constant of the second spring. 6. The shank assembly of claim 1 , wherein the reversible mounting plate corresponds to a first reversible mounting plate and the mounting aperture corresponds to a first mounting aperture, further comprising a second reversible mounting plate spaced apart from the first reversible plate, the second reversible mounting plate defining a second mounting aperture configured to be aligned with the first mounting aperture at the second mounting location. 7. The shank assembly of claim 1 , wherein the reversible mounting plate is coupled to a portion of the shank. 8. The shank assembly of claim 1 , wherein the first mounting location is defined by at least one mounting plate configured to be coupled to a frame of the agricultural implement. 9. The shank assembly of claim 8 , wherein the shank is pivotably coupled to the at least one mounting plate. 10. The shank assembly of claim 1 , wherein the reversible mounting plate extends in a lengthwise direction between a first end and a second end and in a lateral direction between a first side and a second side, the centerline extending in the lengthwise direction between the first and second ends of the reversible mounting plate and being positioned laterally between the first and second sides of the reversible mounting plate. 11. An agricultural implement, comprising: a frame; a shank configured to be pivotable to the frame; a biasing element configured to exert a biasing force on the shank, the biasing element being compressed between a first mounting location for the biasing element and a second mounting location for the biasing element; a reversible mounting plate configured to be positioned relative to the biasing element in both a first orientation and a second orientation, the second orientation for the reversible mounting plate being offset from the first orientation by one hundred and eighty degrees about a centerline of the reversible mounting plate, the reversible mounting plate defining a mounting aperture positioned at the second mounting location for the biasing element, the mounting aperture being offset from the centerline of the reversible mounting plate such that a position of the second mounting location relative to the first mounting location differs depending on whether the reversible mounting plate is provided in the first orientation or the second orientation relative to the biasing element; wherein the biasing element exerts a first biasing force on the shank when the reversible member is oriented in the first orientation and a second biasing force on the shank when the reversible member is oriented in the second orientation, the first biasing force being different than the second biasing force. 12. The agricultural implement of claim 11 , wherein the biasing element defines a first compressed length between the first and second mounting locations when the reversible member is oriented in the first orientation and a second compressed length between the first and second mounting locations when the reversible member is oriented in the second orientation, the first compressed length being different than the second compressed length. 13. The agricultural implement of claim 11 , wherein the biasing element comprises a first spring. 14. The agricultural implement of claim 13 , further comprising a second spring positioned concentrically within the first spring. 15. The agricultural implement of claim 14 , wherein the first spring has a spring constant that differs from a spring constant of the second spring. 16. The agricultural implement of claim 11 , wherein the reversible mounting plate corresponds to a first reversible mounting plate and the mounting aperture corresponds to a first mounting aperture, further comprising a second reversible mounting plate spaced apart from the first reversible plate, the second reversible mounting plate defining a second mounting aperture configured to be aligned with the first mounting aperture at the second mounting location. 17. The agricultural implement of claim 11 , wherein the reversible mounting plate is coupled to a portion of the shank. 18. The agricultural implement of claim 11 , wherein the first mounting location is defined by at least one mounting plate configured to be coupled to the frame of the agricultural implement. 19. The agricultural implement of claim 18 , wherein the shank is pivotably coupled to the at least one mounting plate. 20. A method for adjusting a biasing force on a shank of a shank assembly configured to be provided in operative association with an agricultural implement, the shank being pivotably coupled to a frame of the implement, the shank assembly further including a biasing element configured to exert a biasing force on the shank, the biasing element being compressed between a first mounting location for the biasing element and a second mounting location for the biasing element, the method comprising: removing a reversible mounting plate of the shank assembly that was initially oriented at a first orientation relative to the biasing element, the reversible mounting plate defining a mounting aperture positioned at the second mounting location for the biasing element, the mounting aperture being offset from a centerline of the reversible mounting plate such that a position of the second mounting location relative to the firs
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