Bike rack frame clamps, systems and methods
US-12115943-B2 · Oct 15, 2024 · US
US9387572B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9387572-B2 |
| Application number | US-201113227327-A |
| Country | US |
| Kind code | B2 |
| Filing date | Sep 7, 2011 |
| Priority date | Sep 7, 2011 |
| Publication date | Jul 12, 2016 |
| Grant date | Jul 12, 2016 |
A practical reading order for non-experts. Skip the full description unless you need deep technical detail.
What the patent document calls the invention.
A short plain-language summary of the technical disclosure.
Who owns or filed the patent and who is credited as inventor.
Filing, priority, publication, and grant dates set the timeline.
The legal scope of protection — read this for what is actually claimed.
Technology tags used to group this patent with similar filings.
Prior art links and similar publications in this corpus.
Official abstract text for this publication.
A clamp apparatus for connection to a miter saw includes a shaft and a carriage assembly. The carriage assembly is slidably coupled to the shaft. The carriage assembly includes a carriage body, a first camp assembly, and a second clamp assembly. The first clamp assembly is configured for movement relative to the carriage body between a first clamp position and a second clamp position. The first clamp assembly is further configured (i) to enable movement of the carriage body relative to the shaft when the first clamp assembly is in the first clamp position and (ii) to prevent movement of the carriage body relative to the shaft when the first clamp assembly is in the second clamp position. The second clamp assembly is configured for movement relative to the carriage body between a third camp position and a fourth clamp position.
Opening claim text (preview).
What is claimed is: 1. A clamp apparatus for connection to a miter saw, the clamp apparatus comprising: a shaft configured for connection to the miter saw, said shaft defining a first flat clamp face and an opposite second flat clamp face that is parallel to said first flat clamp face; and a carriage assembly slidably coupled to said shaft, said carriage assembly including a carriage body including an upper arm spaced apart from a lower arm by a neck portion, said lower arm defining a first bore through which said shaft is configured to extend and a flat clamp surface, a bore axis is defined by said first bore and extends through said upper arm, said first bore is located between said upper arm and said flat clamp surface along said bore axis, a first clamp assembly configured for movement relative to said carriage body between a first unclamped position and a first clamped position, said first clamp assembly further configured (i) to enable movement of said carriage body relative to said shaft when said first clamp assembly is in said first unclamped position and (ii) to prevent movement of said carriage body relative to said shaft when said first clamp assembly is in said first clamped position, and said first clamp assembly including an eccentric member rotatably connected to said carriage body, and located directly opposite from said flat clamp surface, such that when said first clamp assembly is in said first clamped position said eccentric member is clamped against said first flat clamp face and said flat clamp surface is clamped against said second flat clamp face to prevent movement of said carriage body relative to said shaft, and a second clamp assembly configured for movement relative to said carriage body between a second unclamped position and a second clamped position, said second clamp assembly including a foot member, said second clamp assembly configured to move said foot member away from said carriage body in response to said second clamp assembly moving from said second unclamped position to said second clamped position, wherein said shaft is not covered by said carriage body between said first bore and said upper arm. 2. The clamp apparatus of claim 1 , wherein: said carriage body defines a second bore configured to slidably receive said shaft, and said second bore defines an axis that is coaxial with said bore axis. 3. The clamp apparatus of claim 1 , wherein: the miter saw defines a workpiece support surface, and said foot member is moved toward said workpiece support surface when said second clamp assembly is moved from said second unclamped position to said second clamped position. 4. The clamp apparatus of claim 3 , wherein: when said first clamp assembly is in said first unclamped position said carriage body is slidable relative to said shaft in a sliding direction for a first distance, said foot member moves a second distance toward the workpiece support surface in only said sliding direction in response to said second clamp assembly moving from said second unclamped position to said second clamped position, and said first distance is substantially greater than said second distance. 5. The clamp apparatus of claim 1 , wherein: a portion of said eccentric member moves toward said flat clamp surface and said shaft when said first clamp assembly is moved from said first unclamped position to said first clamped position. 6. The clamp apparatus of claim 1 , wherein said second clamp assembly includes: a first linkage extending from said foot member, a second linkage rotatably attached to said first linkage, a third linkage rotatably attached to said second linkage and rotatably attached to said carriage body, and a handle portion extending from said third linkage. 7. The clamp apparatus of claim 1 , wherein: said shaft includes a first shoulder, said shaft includes a second shoulder, and said carriage body is slidable on said shaft between said first shoulder and said second shoulder when said first clamp assembly is in said first unclamped position. 8. A workpiece clamp apparatus for connection to a miter saw, the workpiece clamp apparatus comprising: a shaft configured for connection to the miter saw, said shaft defining a first flat clamp face and an opposite second flat clamp face that is parallel to said first flat clamp face; and a carriage assembly slidably coupled to said shaft, said carriage assembly including a carriage body slidable on said shaft between an upper carriage position and a lower carriage position in a sliding direction, said carriage body including an upper arm spaced apart from a lower arm by a neck portion, said lower arm defining a first bore through which said shaft is configured to extend and a flat clamp surface, a bore axis is defined by said first bore and extends through said upper arm, and said first bore is located completely between said upper arm and said flat clamp surface along said bore axis, a first clamp assembly including an eccentric member rotatably connected to said carriage body, and located directly opposite from said flat clamp surface, such that when said first clamp assembly is in a clamped position said eccentric member is clamped against said first flat clamp face and said flat clamp surface is clamped against said second flat clamp face to prevent sliding movement of said carriage assembly relative to said shaft, and a second clamp assembly configured for movement relative to said carriage body between an unclamped position and a clamped position, said second clamp assembly including a foot member, said second clamp assembly configured to move said foot member away from said carriage body in only said sliding direction in response to said second clamp assembly moving from said unclamped position to said clamped position, wherein said shaft is not covered by said carriage body between said first bore and said upper arm, such that no portion of said carriage body contacts said shaft between said first bore and said upper arm. 9. The workpiece clamp apparatus of claim 8 , wherein: said first clamp assembly is further configured to enable sliding movement of said carriage body relative to said shaft when said first clamp assembly is in an unclamped position. 10. The workpiece clamp apparatus of claim 9 , wherein: said carriage body defines a second bore configured to slidably receive said shaft, and said second bore defines an axis that is coaxial with said bore axis. 11. The workpiece clamp apparatus of claim 9 , wherein a portion of said eccentric member moves toward said clamp surface and said shaft when said first clamp assembly is moved from said unclamped position to said clamped position. 12. The workpiece clamp apparatus of claim 8 , wherein said second clamp assembly includes: a first linkage extending from said foot member, a second linkage rotatably attached to said first linkage, a third linkage rotatably attached to said second linkage and rotatably attached to said carriage body, and an handle portion extending from said third linkage. 13. A clamp apparatus for connection to a support structure of a power saw, the clamp apparatus comprising: a first shaft configured for connection to the support structure of the power saw, said shaft defining a first flat clamp face and an opposite second flat clamp face that is parallel to said first flat clamp face; a carriage body slidably coupled to said first shaft and configured for movement in a sliding direction, said carriage body including an upper arm spaced apart from a lower arm by a neck portion, said lower arm defining a first bore through which said shaft is configured to
with at least one jaw sliding along a bar (B25B5/061, B25B5/085, B25B5/102, B25B5/127 take precedence) · CPC title
Combined with, peculiarly related to, other element · CPC title
using toggle links · CPC title
with at least one jaw sliding along a bar · CPC title
Supporting devices for clamps · CPC title
Related publications grouped by family.
Answers are generated from the same data shown on this page.