Vehicle suspension
US-9604517-B2 · Mar 28, 2017 · US
US10144262B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10144262-B2 |
| Application number | US-201615182227-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jun 14, 2016 |
| Priority date | Sep 29, 2014 |
| Publication date | Dec 4, 2018 |
| Grant date | Dec 4, 2018 |
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A vehicle suspension having a frame attachment portion attached to a saddle, first and second bolster springs mounted to spring mounts on an outboard side of the saddle and mounted on walls of a spring mount on an outboard side of an equalizing beam, and third and fourth bolster springs mounted to walls of a spring mount on an inboard side of the saddle and mounted to spring mounts on an inboard side of the equalizing beam, wherein upwardly extending flanges on the bottom of the first and second bolster sprints are mounted to each other using a common fastener, and wherein upwardly extending flanges on the bottom of the third and fourth bolster springs are mounted to each other with a common fastener.
Opening claim text (preview).
We claim: 1. A load cushion for a vehicle suspension system, the load cushion comprising: an end plate; an elastomeric cushion portion extending from the end plate to a top of the cushion portion; wherein a vertical cross-section of the cushion portion from a front side to a rear side of the cushion is symmetrical and has curvilinear edges; and wherein a narrowest width between the front side and the rear side is positioned at a midpoint between the end plate and the top of the cushion portion; wherein a vertical cross section of the cushion portion from a left side to a right side of the cushion is symmetrical and has curvilinear edges; and wherein a narrowest width between the left side and the right side is positioned at a midpoint between the end plate and the top of the cushion portion; and wherein a horizontal cross section of the elastomeric cushion portion taken at the midpoint is square with rounded corners. 2. The load cushion of claim 1 , wherein an end plate is positioned over the top of the cushion portion. 3. The load cushion of claim 2 , wherein an exposed surface of the end plate is encapsulated. 4. The load cushion of claim 1 , wherein each horizontal cross section of the elastomeric cushion portion between the end plate and the top of the cushion portion is square with rounded corners. 5. The load cushion of claim 1 , wherein the end plate has two oppositely disposed flanges each having a mounting hole adapted for attachment to a load cushion spring mount. 6. The load cushion of claim 1 , wherein a vertical cross-section of the elastomeric cushion has a negative Gaussian curvature. 7. A load cushion for a vehicle suspension system, the load cushion comprising: an end plate; an elastomeric cushion portion extending from the end plate to a top of the cushion portion; wherein a vertical cross-section of the cushion portion from a front side to a rear side of the cushion is symmetrical and has curvilinear edges; wherein a narrowest width between the front side and the rear side is positioned at a midpoint between the end plate and the top of the cushion portion; wherein the vertical cross-section of the elastomeric cushion has a negative Gaussian curvature; and wherein when the load cushion undergoes compression, the vertical cross-section changes through a zero Gaussian curvature. 8. A load cushion for a vehicle suspension system, the load cushion comprising: an end plate; an elastomeric cushion portion extending from the end plate to a top of the cushion portion; wherein a vertical cross-section of the cushion portion from a front side to a rear side of the cushion is symmetrical and has curvilinear edges; and wherein a narrowest width between the front side and the rear side is positioned at a midpoint between the end plate and the top of the cushion portion; wherein the vertical cross-section of the cushion portion of the elastomeric cushion has a negative Gaussian curvature; and wherein when the load cushion undergoes 50% compression, the vertical cross-section changes to a zero or slightly positive Gaussian curvature.
with longitudinally arranged arms articulated on the axle · CPC title
mounted on a single pivoted arm {, e.g. the arm being rigid} · CPC title
using resilient buffer · CPC title
two or more axles being mounted on a longitudinal rocking or walking beam · CPC title
subjected to compression · CPC title
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