Track system having low vibrations
US-2017225727-A1 · Aug 10, 2017 · US
US2023331321A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2023331321-A1 |
| Application number | US-202318135845-A |
| Country | US |
| Kind code | A1 |
| Filing date | Apr 18, 2023 |
| Priority date | Apr 19, 2022 |
| Publication date | Oct 19, 2023 |
| Grant date | — |
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A pivoting assembly for connecting a support wheel assembly to a frame of a track system is disclosed. The pivoting assembly includes first, intermediate and second clamping members, first and second resilient members and a shaft configured to connect to the support wheel assembly. The first resilient member has first and second engaging portions configured to, respectively, operationally engage with the first clamping member, and a first engaging side of the intermediate clamping member. The second resilient member has third and fourth engaging portions configured to, respectively, operationally engage with a second engaging side of the intermediate clamping member and the second clamping member. The intermediate clamping member is 216apivotable about a pivot axis. The first and intermediate clamping members apply a first clamping force to the first resilient member. The intermediate and second clamping members apply a second clamping force to the second resilient member.
Opening claim text (preview).
What is claimed is: 1 . A pivoting assembly for connecting at least one support wheel assembly to a frame of a track system, the pivoting assembly comprising: a first clamping member; a first resilient member having a first engaging portion operationally engaged with the first clamping member, and a second engaging portion; an intermediate clamping member having a first engaging side operationally engaged with the second engaging portion of the first resilient member, a second engaging side, a shaft connected to the intermediate clamping member and configured to connect to at least one wheel, a second resilient member having a third engaging portion and a fourth engaging portion, the third engaging portion being operationally engages with the second engaging side of the intermediate clamping member; a second clamping member operationally engaged with the fourth engaging portion of the second resilient member and connected to the first clamping member, wherein: the intermediate clamping member being pivotable about a pivot axis, the first clamping member and the intermediate clamping member spaced to apply a first clamping force to the first resilient member, and the second clamping member and the intermediate clamping member are spaced to apply a second clamping force to the second resilient member. 2 . The pivoting assembly of claim 1 , wherein in response to the intermediate clamping member pivoting about the pivot axis, at least one of the first and second resilient members are configured to bias the intermediate clamping member toward a first position. 3 . The pivoting assembly of claim 1 , wherein: in a first state, when the first and intermediate clamping members apply the first clamping force, and the intermediate and second clamping members apply the second clamping force, the first engaging side of the intermediate clamping member engages the second engaging portion with a first contact area, and the second engaging side of the intermediate clamping member engages the third engaging portion with a second contact area; and in a second state: the first and intermediate clamping members apply a third clamping force, the third clamping force being greater than the first clamping force, the intermediate and second clamping members apply a fourth clamping force, the fourth clamping force being greater than the second clamping force, the first engaging side of the intermediate clamping member engages the second engaging portion with a third contact area, and the second engaging side of the intermediate clamping member engages the third engaging portion with a fourth contact area. 4 . The pivoting assembly of claim 3 , wherein the third contact area is greater than the first contact area and the fourth contact area is greater than the second contact area. 5 . The pivoting assembly of claim 3 , wherein: the second contact area is configured to increase progressively in response to gradually increasing the first clamping force; and the fourth contact area is configured to increase progressively in response to gradually increasing the second clamping force. 6 . The pivoting assembly of claim 1 , wherein: the first clamping force pre-stresses the first resilient member; and the second clamping force pre-stresses the second resilient member. 7 . The pivoting assembly of claim 1 , wherein: at least one of the first, second, third and fourth engaging portions has a first inter-engageable member; and a corresponding one of the first clamping member, the second clamping member, the first side of the intermediate clamping member and the second side of the intermediate clamping member of the at least one of the first, second, third and fourth engaging portions has a second inter-engageable member complementary to the first inter-engageable member, the first inter-engageable member being configured to provide a mechanical interlock. 8 . The pivoting assembly of claim 1 , wherein at least one of the first, second, third and fourth engaging portions defines one of: a generally flat profile, a generally convex profile, and a generally concave profile. 9 . The pivoting assembly of claim 1 , wherein at least one of: a profile of a side extending between the first and second engaging portions of the first resilient member is generally concave; and a profile of a side extending between the first and second engaging portions of the second resilient member is generally concave. 10 . The pivoting assembly of claim 1 , wherein the intermediate clamping member is pivotable about the pivot axis by about 15 degrees. 11 . The pivoting assembly of claim 1 , wherein the first resilient member is disposed vertically above the intermediate clamping member and the second resilient member is disposed vertically below the intermediate clamping member. 12 . The pivoting assembly of claim 1 , wherein the first and second resilient members are made of a polymeric material. 13 . The pivoting assembly of claim 12 , wherein the polymeric material is rubber. 14 . The pivoting assembly of claim 1 , wherein the first clamping member is member of a frame of the track system. 15 . The pivoting assembly of claim 1 , wherein at least one of : the first resilient member is a first leading resilient member, and the pivoting assembly further includes a second trailing resilient member longitudinally spaced from the first leading resilient member; and the second resilient member is a second leading resilient member, and the pivoting assembly further includes a second trailing resilient member longitudinally spaced from the second leading resilient member. 16 . The pivoting assembly of claim 15 , wherein the first and second leading resilient members are disposed longitudinally forward from the shaft, and the first and second trailing resilient members are disposed longitudinally rearward from the shaft. 17 . The pivoting assembly of claim 1 , wherein the second clamping member is removably connected to the first clamping member. 18 . A track system comprising: a frame assembly; a sprocket wheel assembly operatively connected to the frame assembly; at least one pivoting assembly of claim 1 removably connected to the frame assembly; a plurality of support wheel assemblies connected to the frame assembly by the at least one pivoting assembly. 19 . A pivoting assembly for a track system, the pivoting assembly being configured to connect to at least one wheel, the pivoting assembly comprising: a first resilient member having a body which is resiliently compressible, a first clamping member and an intermediate clamping member, the first and intermediate clamping members being configured to exert a first compressive force on the first resilient member; a second resilient member having a body which is resiliently compressible; a second clamping member, the second clamping member and the intermediate clamping member being configured to exert a second compressive force on the second resilient member; a shaft member having end portions which are connectable to wheel assemblies of the track system and being moveable, about a pivot axis in response to a vertical displacement of the wheels, the shaft member being connected to the intermediate clamping member such that responsive to movement of the shaft member, one or both of the first resilient member and the second resilient member are further deformed and exert a responsive force on the intermediate clamping member to counteract the movement of the shaft me
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